palladium has been researched along with phosphine in 112 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 37 (33.04) | 29.6817 |
2010's | 62 (55.36) | 24.3611 |
2020's | 13 (11.61) | 2.80 |
Authors | Studies |
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Fu, GC; Hills, ID; Netherton, MR | 1 |
Hartwig, JF; Kawatsura, M; Utsunomiya, M | 1 |
Akiyama, R; Kobayashi, S; Okamoto, K | 1 |
Kaushik, NK; Manav, N; Mishra, AK | 1 |
Ko, CC; Lu, XX; Tang, HS; Wong, JK; Yam, VW; Zhu, N | 1 |
Christensen, CA; Meldal, M | 1 |
Gaumont, AC; Pican, S | 1 |
Shaughnessy, KH; Western, EC | 1 |
Agarkov, A; Gilbertson, SR; Greenfield, S; Pawlick, R; Starkey, G; Xie, D | 1 |
Kochi, T; Nozaki, K; Yoshimura, K | 1 |
de Vries, JG | 1 |
Fang, H; Hong, F; Liang, Q; Nelson, S; Shi, G; Weber, SG | 1 |
Cheng, K; Xin, B; Zhang, Y | 1 |
Borgatti, M; Di Blasio, B; Fabbri, E; Gambari, R; Messere, A; Pedone, C; Romanelli, A | 1 |
Zhang, W; Zhang, X | 1 |
Kamer, PC; Meeuwenoord, NJ; Ropartz, L; Slawin, AM; van der Marel, GA; van Leeuwen, PW | 1 |
Kobayashi, S; Nishio, R; Sugiura, M | 1 |
Barder, TE; Biscoe, MR; Buchwald, SL; Ikawa, T | 1 |
Cui, X; Fu, Y; Guo, QX; Li, J; Liu, L; Zhang, ZP | 1 |
Bertrand, G; Bourissou, D; Donnadieu, B; Gornitzka, H; Vignolle, J | 1 |
Larrosa, I; Lebrasseur, N | 1 |
Kondo, Y; Matsumoto, T; Tsukamoto, H | 1 |
Breit, B; Keller, M; Schmidt, S; Usui, I | 1 |
Kwong, FY; Lau, CP; So, CM; Zhou, Z | 1 |
Buchwald, SL; Martin, R | 1 |
Buchwald, SL; Surry, DS | 1 |
Lu, W; Qin, C | 1 |
Kwong, FY; Lau, CP; So, CM | 1 |
Imperato, G; König, B | 1 |
Hayashi, T; Murakami, M; Shintani, R | 1 |
Colletti, SL; Li, GY; Shen, HC; Song, M; Wu, K; Yang, DX | 1 |
Beller, M; Börner, A; Huang, J; Kadyrov, R; Schäffner, B; Schulz, T; Torborg, C; Zapf, A | 1 |
Buchwald, SL; Davis, NR; Fors, BP | 1 |
Kantchev, EA; Peh, GR; Ying, JY; Zhang, C | 1 |
Gunda, P; Lakshman, MK; Parrish, D; Pratap, R; Venkataraman, D | 1 |
Chan, AS; Kwong, FY; Lam, FL; Lau, CP; Lee, HW; So, CM | 1 |
Buchwald, SL; Cuezva, AM; Hicks, JD; Hyde, AM | 1 |
Kunes, J; Lubojacký, R; Pour, M; Senel, P; Spulák, M | 1 |
Ishikawa, S; Manabe, K | 1 |
de Vries, JG; Feringa, BL; Janssen, DB; Minnaard, AJ; Szymański, W; Verkuijl, BJ; Wu, B | 1 |
Ackermann, L; Kapdi, AR; Potukuchi, HK; Schulzke, C | 1 |
Bickelhaupt, FM; Jansen, E; Reek, JN; Siegler, MA; Spek, AL; van Zeist, WJ; Wassenaar, J | 1 |
de Vries, JG; Feringa, BL; Minnaard, AJ; Schuur, B; Verkuijl, BJ | 1 |
Chow, WK; Choy, PY; Kwong, FY; Lau, CP; So, CM | 1 |
Fu, WJ; Hao, XQ; Ji, BM; Wang, ZQ; Xu, C; Xu, Y; Zhang, YP | 1 |
Ferrer, M; Pedrosa, A; Rodríguez, L; Rossell, O; Vilaseca, M | 1 |
Balakrishna, MS; Mague, JT; Venkateswaran, R | 1 |
Ward, TR | 1 |
Martin, E; Rios, IG; Rosas-Hernandez, A | 1 |
Cao, Z; Du, H; Feng, X; Liu, Y; Liu, Z; Zhuang, M | 1 |
Cullen, SC; Dunn, TB; Kotecki, BJ; Montavon, DK; Shekhar, S | 1 |
Loy, RN; Sanford, MS | 1 |
Hu, J; Tong, X; Wei, Y | 1 |
de Koster, CG; Dekker, HL; Koblenz, TS; Reek, JN; van Leeuwen, PW | 2 |
Bowden, NB; Gupta, A; Long, TR; Rethwisch, DG | 1 |
Ghosh, R; Sarkar, A | 1 |
Buchwald, SL; Fors, BP; Wu, X | 1 |
Amardeil, R; Beaupérin, M; Cattey, H; Doucet, H; Hierso, JC; Mom, S; Roy, D; Royer, S | 1 |
Buchwald, SL; Cho, EJ | 1 |
Bennström, E; Nilsson Lill, SO; Norrby, PO; Rein, T; Ryberg, P | 1 |
Chung, KH; Kwong, FY; Lau, CP; Luk, CH; So, CM; Wong, SM; Zhou, Z | 1 |
Buchwald, SL; Su, M | 1 |
Hayashi, T; Ito, T; Shintani, R | 1 |
Fan, YC; Kwon, O | 2 |
Carrow, BP; Goto, H; Ito, S; Kageyama, T; Nakamura, A; Nozaki, K | 1 |
Clavier, H; Giordano, L; Tenaglia, A | 1 |
Bissember, AC; Fu, GC; Levina, A | 1 |
Baiget, L; Batsanov, AS; Dyer, PW; Fox, MA; Howard, JA; Metters, OJ; Phanopoulos, A; Tuxworth, L | 1 |
Fan, S; Yu, YB; Zhang, X | 1 |
Buchwald, SL; Chen, J; Maimone, TJ; Milner, PJ; Müller, P; Su, M | 1 |
Cai, S; He, S; Lu, Y; Wei, F; Zeng, X; Zhao, L | 1 |
Graf, E; Guenet, A; Hosseini, MW; Kyritsakas, N; Zigon, N | 1 |
Duan, WL; Lu, J; Ye, J | 2 |
Jia, T; Montel, S; Walsh, PJ | 1 |
Geng, W; Hao, W; Xi, Z; Zhang, WX | 1 |
Barbasiewicz, M; Bhuvanesh, N; Gladysz, JA; Hampel, F; Lis, T; Nawara-Hultzsch, AJ; Stollenz, M; Szafert, S | 1 |
Fu, T; Gao, Y; Hu, G; Peng, Z; Qiao, H; Wu, X; Zhao, Y | 1 |
Ardolino, MJ; Morken, JP | 1 |
Bellomo, A; Carroll, PJ; Dreher, SD; Jia, T; Robinson, JR; Schelter, EJ; Trongsiriwat, N; Tudge, MT; Walsh, PJ; Yin, H; Zhang, J | 1 |
Chen, JR; Cheng, HG; Deng, QH; Feng, B; Lu, LQ; Xiao, WJ | 1 |
Cui, L; Hierso, JC; Platon, M; Rampazzi, V; Rousselin, Y; Saeys, M; Wijaya, N | 1 |
Aleksandrov, A; Arkhipova, DA; Ermolaev, VV; Grimme, S; Katsyuba, SA; Miluykov, VA; Sinyashin, OG; Yan, N; Zvereva, EE | 1 |
Feng, Z; Xiao, YL; Zhang, B; Zhang, X | 1 |
Cavinato, G; Toniolo, L | 1 |
Buchwald, SL; Hooker, JM; Lee, HG; Milner, PJ; Placzek, MS | 1 |
Darkwa, J; Elkhadir, A; Fonteh, P; Guzei, I; Meyer, D; Omondi, B | 1 |
He, J; Shigenari, T; Yu, JQ | 1 |
Bedford, RB; Durrant, SJ; Montgomery, M | 1 |
Jia, YX; Jonathan Chew, R; Leung, PH; Li, BB; Li, Y; Pullarkat, SA; Soon Tan, N; Zhu, P | 1 |
Latocha, M; Lis, T; Pruchnik, FP; Pruchnik, H; Zielińska, A | 1 |
Fu, WC; Kwong, FY; Lee, IT; So, CM; Yuen, OY | 1 |
Fu, GC; Kalek, M | 1 |
Dong, G; Dong, Z; Liu, P; Lu, G; Wang, J | 1 |
Tarnowicz-Ligus, S; Trzeciak, AM | 1 |
Demchuk, OM; Dybała, I; Jasiński, R; Mirosław, B; Pietrusiewicz, KM; Szwaczko, K | 1 |
Qiu, Z; Sun, R; Teng, D; Yang, K | 1 |
Buchwald, SL; Ruiz-Castillo, P; Schuppe, AW; Zhang, H | 1 |
Entz, ED; Hooker, LV; Neufeldt, SR; Russell, JEA | 1 |
Chen, VY; Kwon, O | 1 |
Gómez-Orellana, P; Lledós, A; Ujaque, G | 1 |
Blom, B; Kuijpers, T | 1 |
Gao, Z; He, M; Jiang, G; Qian, J; Yang, H; Zhang, J | 1 |
Chen, Z; Ng, SS; So, CM; Yuen, OY | 1 |
Bortolamiol, E; Caligiuri, I; Cavallo, L; Demitri, N; Fama, F; Rizzolio, F; Scattolin, T; Visentin, F; Zhang, Z | 1 |
Kuribara, T; Nakajima, M; Nemoto, T | 1 |
Fernández, A; Munín-Cruz, P; Ortigueira, JM; Pereira, MT; Rúa-Sueiro, M; Vila, JM | 1 |
Chen, YX; Duan, HZ; Hu, C; Li, YL; Liu, X; Wang, J; Wang, SH; Xia, Y | 1 |
Choy, PY; Kwong, FY; Tse, MH | 1 |
Almallah, H; Amardeil, R; Cattey, H; Hierso, JC; Labonde, M; Pirio, N; Radal, L; Roger, J; Sabbadin, H | 1 |
4 review(s) available for palladium and phosphine
Article | Year |
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Biaryl phosphane ligands in palladium-catalyzed amination.
Topics: Amides; Amination; Amines; Catalysis; Hydrocarbons, Halogenated; Imines; Ligands; Palladium; Pharmaceutical Preparations; Phosphines | 2008 |
Recent advances in the application of chiral phosphine ligands in Pd-catalysed asymmetric allylic alkylation.
Topics: Alkylation; Catalysis; Ligands; Palladium; Phosphines; Stereoisomerism | 2011 |
Carbonylation of ethene catalysed by Pd(II)-phosphine complexes.
Topics: Catalysis; Ethylenes; Palladium; Phosphines | 2014 |
Homo and heterobimetallic palladium and platinum complexes bearing μ-diphosphane bridges involved in biological studies.
Topics: Animals; Antineoplastic Agents; Cell Survival; Coordination Complexes; Humans; Ligands; Palladium; Phosphines; Platinum; Structure-Activity Relationship | 2021 |
108 other study(ies) available for palladium and phosphine
Article | Year |
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Toward an improved understanding of the unusual reactivity of Pd0/trialkylphosphane catalysts in cross-couplings of alkyl electrophiles: quantifying the factors that determine the rate of oxidative addition.
Topics: Alkylation; Kinetics; Molecular Structure; Oxidation-Reduction; Palladium; Phosphines; Stereoisomerism; Thermodynamics | 2003 |
Palladium-catalyzed equilibrium addition of acidic OH groups across dienes.
Topics: Acids; Carboxylic Acids; Catalysis; Cyclohexanes; Cyclohexenes; Esters; Ligands; Magnetic Resonance Spectroscopy; Molecular Structure; Palladium; Phenol; Phosphines | 2003 |
Suzuki-Miyaura coupling catalyzed by polymer-incarcerated palladium, a highly active, recoverable, and reusable Pd catalyst.
Topics: Catalysis; Hydrocarbons, Aromatic; Ligands; Molecular Structure; Organometallic Compounds; Palladium; Phosphines; Polymers | 2004 |
Triphenyl phosphine adducts of platinum(IV) and palladium(II) dithiocarbamates complexes: a spectral and in vitro study.
Topics: Antineoplastic Agents; Cell Line, Tumor; Drug Screening Assays, Antitumor; Humans; Ligands; Palladium; Phosphines; Platinum; Spectrum Analysis; Temperature; Terphenyl Compounds; Thiocarbamates | 2004 |
Anion-assisted trans-cis isomerization of palladium(II) phosphine complexes containing acetanilide functionalities through hydrogen bonding interactions.
Topics: Acetanilides; Anions; Hydrogen Bonding; Magnetic Resonance Spectroscopy; Molecular Structure; Palladium; Phosphines; Spectrum Analysis; Stereoisomerism | 2005 |
Efficient solid-phase synthesis of peptide-based phosphine ligands: towards combinatorial libraries of selective transition metal catalysts.
Topics: Catalysis; Combinatorial Chemistry Techniques; Ligands; Metals; Models, Molecular; Molecular Structure; Palladium; Peptides; Phosphines | 2005 |
Palladium catalysed enantioselective phosphination reactions using secondary phosphine-boranes and aryl iodide.
Topics: Boranes; Catalysis; Crystallography, X-Ray; Hydrocarbons, Iodinated; Magnetic Resonance Spectroscopy; Models, Molecular; Molecular Conformation; Organometallic Compounds; Organophosphorus Compounds; Palladium; Phosphines; Phosphorus Isotopes; Sensitivity and Specificity; Stereoisomerism | 2005 |
Inhibitory effects of the guanine moiety on Suzuki couplings of unprotected halonucleosides in aqueous media.
Topics: Anions; Chromatography, Gas; Chromatography, High Pressure Liquid; Guanine; Hydrogen-Ion Concentration; Ligands; Magnetic Resonance Spectroscopy; Molecular Structure; Nucleosides; Palladium; Phosphines; Solubility; Temperature; Water | 2005 |
Synthesis of phosphine containing amino acids: utilization of peptide synthesis in ligand design.
Topics: Amino Acids; Drug Design; Ligands; Molecular Structure; Palladium; Peptides; Phosphines; Protein Structure, Secondary; Rhodium | 2006 |
Synthesis of anionic methylpalladium complexes with phosphine-sulfonate ligands and their activities for olefin polymerization.
Topics: Acrylates; Alkenes; Anions; Ethylenes; Ligands; Organometallic Compounds; Palladium; Phosphines; Polymers; Sulfonic Acids | 2006 |
A unifying mechanism for all high-temperature Heck reactions. The role of palladium colloids and anionic species.
Topics: Acetates; Anions; Chemistry, Pharmaceutical; Colloids; Hot Temperature; Microscopy, Electron, Transmission; Organometallic Compounds; Palladium; Phosphines; Stereoisomerism | 2006 |
Capillary-based, serial-loading, parallel microreactor for catalyst screening.
Topics: Arsenicals; Catalysis; Ligands; Microarray Analysis; Microelectrodes; Organometallic Compounds; Palladium; Phosphines; Sensitivity and Specificity; Time Factors | 2006 |
Phosphine-free cross-coupling reaction of arylboronic acids with carboxylic anhydrides or acyl chlorides in aqueous media.
Topics: Anhydrides; Boronic Acids; Carboxylic Acids; Catalysis; Chlorides; Hydrocarbons, Halogenated; Ketones; Molecular Structure; Organometallic Compounds; Palladium; Phosphines; Polyethylene Glycols | 2006 |
Antiproliferative activity of Pt(II) and Pd(II) phosphine complexes with thymine and thymidine.
Topics: Base Sequence; Cell Proliferation; Crystallography, X-Ray; DNA Primers; Humans; K562 Cells; Palladium; Phosphines; Platinum; Thymidine; Thymine | 2007 |
Highly enantioselective hydrogenation of alpha-dehydroamino esters and itaconates with triphosphorous bidentate ligands and the unprecedented solvent effect thereof.
Topics: Butanones; Catalysis; Esters; Hydrogenation; Ligands; Molecular Conformation; Organometallic Compounds; Organophosphorus Compounds; Palladium; Phosphines; Polytetrafluoroethylene; Solvents; Stereoisomerism; Succinates; X-Ray Diffraction | 2007 |
Phosphine containing oligonucleotides for the development of metallodeoxyribozymes.
Topics: Catalysis; Crystallography; DNA, Catalytic; Idoxuridine; Ligands; Oligonucleotides; Palladium; Phosphines; Transition Elements | 2007 |
Preparation of phosphinated polymer-incarcerated palladium and its application to C-N and C-C bond-forming reactions.
Topics: Catalysis; Conservation of Natural Resources; Organic Chemicals; Palladium; Phosphines; Polymers | 2007 |
Pd-catalyzed amidation of aryl chlorides using monodentate biaryl phosphine ligands: a kinetic, computational, and synthetic investigation.
Topics: Amides; Arylsulfonates; Bromine Compounds; Catalysis; Chlorides; Computer Simulation; Heterocyclic Compounds; Kinetics; Ligands; Models, Molecular; Molecular Structure; Palladium; Phosphines; Spectrophotometry, Infrared | 2007 |
Pd(quinoline-8-carboxylate)(2) as a low-priced, phosphine-free catalyst for Heck and Suzuki reactions.
Topics: Carboxylic Acids; Catalysis; Chemistry, Organic; Hydrocarbons, Brominated; Ligands; Models, Chemical; Organometallic Compounds; Palladium; Phosphines; Quinolines | 2007 |
Palladium-oxygen and palladium-arene interactions in complexes derived from biaryl aminocarbenes: comparison with biaryl phosphanes.
Topics: Alkynes; Allyl Compounds; Cations; Crystallography, X-Ray; Dioxolanes; Models, Molecular; Molecular Structure; Oxygen; Palladium; Phosphines | 2008 |
Room temperature and phosphine free palladium catalyzed direct C-2 arylation of indoles.
Topics: Catalysis; Indoles; Ligands; Molecular Structure; Organometallic Compounds; Palladium; Phosphines; Stereoisomerism; Temperature | 2008 |
Enantioselective arylative cyclization of allenyl aldehydes with arylboronic acids under Pd(II)-diphosphine catalysis.
Topics: Aldehydes; Boronic Acids; Catalysis; Cyclization; Palladium; Phosphines; Stereoisomerism | 2008 |
Allylation of N-heterocycles with allylic alcohols employing self-assembling palladium phosphane catalysts.
Topics: Catalysis; Heterocyclic Compounds; Hydrogen Bonding; Palladium; Phosphines; Propanols | 2008 |
Palladium-catalyzed amination of aryl mesylates.
Topics: Amination; Catalysis; Ligands; Mesylates; Nitrogen; Palladium; Phosphines | 2008 |
Palladium-catalyzed Suzuki-Miyaura cross-coupling reactions employing dialkylbiaryl phosphine ligands.
Topics: Alkylation; Catalysis; Cross-Linking Reagents; Ligands; Models, Molecular; Molecular Structure; Palladium; Phosphines | 2008 |
Phosphine-free palladium(II)-catalyzed arylation of naphthalene and benzene with aryl iodides.
Topics: Benzene; Biphenyl Compounds; Catalysis; Hydrocarbons, Iodinated; Molecular Structure; Naphthalenes; Palladium; Phosphines; Stereoisomerism | 2008 |
A general palladium-catalyzed Suzuki-Miyaura coupling of aryl mesylates.
Topics: Catalysis; Cyclization; Dimerization; Ligands; Mesylates; Molecular Structure; Palladium; Phosphines | 2008 |
Acceleration of Suzuki-Miyaura- and Stille-type coupling reactions by irradiation with near-UV-A light.
Topics: Catalysis; Ligands; Palladium; Phosphines; Substrate Specificity; Temperature; Ultraviolet Rays | 2008 |
Stereoselective synthesis of nipecotic acid derivatives via palladium-catalyzed decarboxylative cyclization of gamma-methylidene-delta-valerolactones with imines.
Topics: Catalysis; Cyclization; Decarboxylation; Imines; Nipecotic Acids; Palladium; Phosphines; Pyrones; Stereoisomerism; Substrate Specificity | 2009 |
Palladium-catalyzed Suzuki-Miyaura coupling of pyridyl-2-boronic esters with aryl halides using highly active and air-stable phosphine chloride and oxide ligands.
Topics: Air; Boronic Acids; Catalysis; Esters; Halogens; Ligands; Oxides; Palladium; Phosphines | 2009 |
Practical imidazole-based phosphine ligands for selective palladium-catalyzed hydroxylation of aryl halides.
Topics: Catalysis; Hydrocarbons, Halogenated; Hydroxylation; Imidazoles; Ligands; Molecular Structure; Organometallic Compounds; Palladium; Phosphines; Stereoisomerism | 2009 |
An efficient process for pd-catalyzed C-N cross-coupling reactions of aryl iodides: insight into controlling factors.
Topics: Amines; Catalysis; Hydrocarbons, Aromatic; Iodides; Palladium; Phosphines; Solubility; Solvents | 2009 |
N-heterocycle carbene (NHC)-ligated cyclopalladated N,N-dimethylbenzylamine: a highly active, practical and versatile catalyst for the Heck-Mizoroki reaction.
Topics: Acrylates; Benzylamines; Bromides; Catalysis; Cinnamates; Esters; Imidazoles; Kinetics; Methane; Palladium; Pharmaceutical Preparations; Phosphines; Stereoisomerism; Structure-Activity Relationship | 2009 |
Influence of biaryl phosphine structure on C-N and C-C bond formation.
Topics: Biphenyl Compounds; Carbon; Catalysis; Crystallography, X-Ray; Electrons; Ligands; Magnetic Resonance Spectroscopy; Models, Molecular; Molecular Conformation; Nitrogen; Nucleosides; Organometallic Compounds; Palladium; Phosphines; Structure-Activity Relationship | 2009 |
Palladium-catalyzed cross-coupling of aryl halides using organotitanium nucleophiles.
Topics: Catalysis; Halogens; Palladium; Phosphines; Titanium | 2009 |
Pd-catalyzed N-arylation of secondary acyclic amides: catalyst development, scope, and computational study.
Topics: Amides; Catalysis; Chlorides; Computer Simulation; Ligands; Palladium; Phosphines; Sulfonamides | 2009 |
Direct C-H arylation and alkenylation of 1-substituted tetrazoles: phosphine as stabilizing factor.
Topics: Alkenes; Catalysis; Imidazoles; Ligands; Magnetic Resonance Spectroscopy; Palladium; Phosphines; Purines; Stereoisomerism; Tetrazoles | 2010 |
DHTP ligands for the highly ortho-selective, palladium-catalyzed cross-coupling of dihaloarenes with grignard reagents: a conformational approach for catalyst improvement.
Topics: Bromobenzenes; Catalysis; Ligands; Molecular Conformation; Palladium; Phosphines; Stereoisomerism; Terphenyl Compounds | 2010 |
Enantiomerically pure beta-phenylalanine analogues from alpha-beta-phenylalanine mixtures in a single reactive extraction step.
Topics: Catalysis; Cinnamates; Hydrogen-Ion Concentration; Palladium; Phenylalanine; Phosphines; Stereoisomerism | 2010 |
Kumada-Corriu cross-couplings with 2-pyridyl Grignard reagents.
Topics: Catalysis; Coordination Complexes; Crystallography, X-Ray; Molecular Conformation; Palladium; Phosphines; Pyridines | 2010 |
Catalyst selection based on intermediate stability measured by mass spectrometry.
Topics: Acetates; Alkylation; Allyl Compounds; Catalysis; Ligands; Mass Spectrometry; Models, Molecular; Molecular Structure; Palladium; Phosphines | 2010 |
Chiral separation of substituted phenylalanine analogues using chiral palladium phosphine complexes with enantioselective liquid-liquid extraction.
Topics: Chemical Fractionation; Kinetics; Ligands; Naphthalenes; Organometallic Compounds; Palladium; Phenylalanine; Phosphines; Solvents; Spectrum Analysis; Stereoisomerism; Temperature | 2010 |
Remarkably effective phosphanes simply with a PPh2 moiety: application to Pd-catalysed cross-coupling reactions for tetra-ortho-substituted biaryl syntheses.
Topics: Biphenyl Compounds; Catalysis; Cross-Linking Reagents; Ligands; Molecular Structure; Palladium; Phosphines; Stereoisomerism | 2010 |
Design and synthesis of tetranuclear cluster monophosphine-cyclopalladated ferrocenylpyrimidinone complexes from the palladium-catalyzed hydroxylation of chloropyrimidine.
Topics: Catalysis; Coordination Complexes; Crystallography, X-Ray; Ferrous Compounds; Hydrocarbons, Chlorinated; Hydroxylation; Metallocenes; Molecular Conformation; Palladium; Phosphines; Pyrimidines | 2010 |
New insights into the factors that govern the square/triangle equilibria of Pd(II) and Pt(II) supramolecules. Unexpected participation of a mononuclear species in the equilibrium.
Topics: DNA; Ethylenediamines; Magnetic Resonance Spectroscopy; Models, Molecular; Molecular Conformation; Organoplatinum Compounds; Palladium; Phosphines; Platinum | 2010 |
Transition metal chemistry of cyclodiphosphanes containing phosphine and amide-phosphine functionalities: formation of a stable dipalladium(II) complex containing a Pd-P σ-bond.
Topics: Amides; Crystallography, X-Ray; Cyclization; Ligands; Molecular Structure; Organometallic Compounds; Palladium; Phosphines; Transition Elements | 2010 |
Artificial metalloenzymes based on the biotin-avidin technology: enantioselective catalysis and beyond.
Topics: Avidin; Biotin; Catalysis; Hydrogenation; Metalloendopeptidases; Palladium; Phosphines; Rhodium; Ruthenium; Stereoisomerism | 2011 |
Pd-catalyzed asymmetric allylic alkylation of indoles and pyrroles by chiral alkene-phosphine ligands.
Topics: Alkenes; Alkylation; Catalysis; Indoles; Ligands; Molecular Structure; Palladium; Phosphines; Pyrroles; Stereoisomerism | 2011 |
A general method for palladium-catalyzed reactions of primary sulfonamides with aryl nonaflates.
Topics: Catalysis; Hydrolysis; Kinetics; Ligands; Palladium; Phosphines; Sulfonamides; Sulfonic Acids | 2011 |
Palladium-catalyzed C-H perfluoroalkylation of arenes.
Topics: Alkylation; Catalysis; Combinatorial Chemistry Techniques; Hydrocarbons, Iodinated; Molecular Structure; Palladium; Phosphines | 2011 |
Phosphine-catalyzed [3+2] annulations of γ-functionalized butynoates and 1C,3O-bisnucleophiles: highly selective reagent-controlled pathways to polysubstituted furans.
Topics: Butyrates; Catalysis; Furans; Indicators and Reagents; Molecular Structure; Palladium; Phosphines; Stereoisomerism | 2011 |
Diphosphine capsules for transition-metal encapsulation.
Topics: Calixarenes; Capsules; Catalysis; Coordination Complexes; Palladium; Phenols; Phosphines; Transition Elements | 2011 |
Bis(metallo) capsules based on two ionic diphosphines.
Topics: Calixarenes; Capsules; Ligands; Palladium; Phenols; Phosphines; Platinum; Rhodium; Transition Elements | 2011 |
Retention of palladium and phosphine ligands using nanoporous polydicyclopentadiene thimbles.
Topics: Indenes; Ligands; Models, Molecular; Molecular Conformation; Nanopores; Palladium; Permeability; Phosphines; Polymers | 2011 |
Palladium-catalyzed amination of allyl alcohols.
Topics: Allyl Compounds; Amination; Amines; Biological Products; Catalysis; Chemistry, Pharmaceutical; Ligands; Magnetic Resonance Spectroscopy; Molecular Structure; Palladium; Phosphines; Propanols; Stereoisomerism | 2011 |
A single phosphine ligand allows palladium-catalyzed intermolecular C-O bond formation with secondary and primary alcohols.
Topics: Alcohols; Catalysis; Hydrocarbons, Brominated; Ligands; Molecular Structure; Organometallic Compounds; Palladium; Phosphines | 2011 |
Congested ferrocenyl polyphosphanes bearing electron-donating or electron-withdrawing phosphanyl groups: assessment of metallocene conformation from NMR spin couplings and use in palladium-catalyzed chloroarenes activation.
Topics: Catalysis; Chlorobenzenes; Electrons; Ferrous Compounds; Magnetic Resonance Spectroscopy; Metallocenes; Models, Molecular; Molecular Conformation; Organometallic Compounds; Palladium; Phosphines | 2011 |
The palladium-catalyzed trifluoromethylation of vinyl sulfonates.
Topics: Alkanesulfonates; Catalysis; Combinatorial Chemistry Techniques; Cyclohexenes; Hydrocarbons, Fluorinated; Molecular Structure; Palladium; Phosphines | 2011 |
tBu or not tBu?
Topics: Catalysis; Hydrocarbons, Halogenated; Models, Molecular; Molecular Structure; Palladium; Phosphines; Stereoisomerism | 2012 |
An efficient palladium-benzimidazolyl phosphine complex for the Suzuki-Miyaura coupling of aryl mesylates: facile ligand synthesis and metal complex characterization.
Topics: Catalysis; Coordination Complexes; Crystallography, X-Ray; Ligands; Mesylates; Molecular Conformation; Palladium; Phosphines | 2012 |
A bulky biaryl phosphine ligand allows for palladium-catalyzed amidation of five-membered heterocycles as electrophiles.
Topics: Amides; Catalysis; Coordination Complexes; Heterocyclic Compounds; Ligands; Palladium; Phosphines | 2012 |
Palladium-catalyzed synthesis of 4-oxaspiro[2.4]heptanes via central attack of oxygen nucleophiles to π-allylpalladium intermediates.
Topics: Catalysis; Cyclopropanes; Heptanes; Ligands; Molecular Structure; Oxygen; Palladium; Phosphines; Pyrones; Spiro Compounds | 2012 |
Phosphine/palladium-catalyzed syntheses of alkylidene phthalans, 3-deoxyisoochracinic acid, isoochracinic acid, and isoochracinol.
Topics: Benzofurans; Catalysis; Molecular Structure; Palladium; Phosphines; Phthalic Acids; Stereoisomerism | 2012 |
P-chiral phosphine-sulfonate/palladium-catalyzed asymmetric copolymerization of vinyl acetate with carbon monoxide.
Topics: Carbon Monoxide; Catalysis; Ligands; Palladium; Phosphines; Polymerization; Stereoisomerism; Sulfonic Acids; Vinyl Compounds | 2012 |
Palladium-mediated phosphine-dependent chemoselective bisallylic alkylation leading to spirocarbocycles.
Topics: Alkylation; Catalysis; Cyclization; Molecular Structure; Palladium; Phosphines; Spiro Compounds; Stereoisomerism | 2012 |
A mild, palladium-catalyzed method for the dehydrohalogenation of alkyl bromides: synthetic and mechanistic studies.
Topics: Alkanes; Alkenes; Bromine; Catalysis; Halogenation; Palladium; Phosphines | 2012 |
Phosphine-alkene ligand-mediated alkyl-alkyl and alkyl-halide elimination processes from palladium(II).
Topics: Alkenes; Chelating Agents; Crystallography, X-Ray; Ligands; Models, Molecular; Molecular Structure; Organometallic Compounds; Palladium; Phosphines | 2012 |
Copper- and phosphine-ligand-free palladium-catalyzed direct allylation of electron-deficient polyfluoroarenes with allylic chlorides.
Topics: Allyl Compounds; Catalysis; Copper; Electrons; Hydrocarbons, Fluorinated; Ligands; Palladium; Phosphines; Stereoisomerism | 2012 |
Investigating the dearomative rearrangement of biaryl phosphine-ligated Pd(II) complexes.
Topics: Coordination Complexes; Kinetics; Ligands; Magnetic Resonance Spectroscopy; Models, Molecular; Palladium; Phosphines; Thermodynamics | 2012 |
A highly sensitive and selective turn-on fluorescent chemosensor for palladium based on a phosphine-rhodamine conjugate.
Topics: Fluorescent Dyes; Limit of Detection; Palladium; Phosphines; Rhodamines; Sensitivity and Specificity; Spectrometry, Fluorescence | 2013 |
A platinum turnstile with a palladium lock.
Topics: Amides; Crystallography, X-Ray; Models, Molecular; Molecular Structure; Organometallic Compounds; Palladium; Phosphines; Platinum | 2013 |
Palladium-catalyzed asymmetric addition of diarylphosphines to α,β-unsaturated sulfonic esters for the synthesis of chiral phosphine sulfonate compounds.
Topics: Catalysis; Esters; Molecular Structure; Organophosphorus Compounds; Palladium; Phosphines; Stereoisomerism; Sulfonic Acids | 2013 |
Palladium-catalyzed asymmetric 1,6-addition of diarylphosphines to α,β,γ,δ-unsaturated sulfonic esters: controlling regioselectivity by rational selection of electron-withdrawing groups.
Topics: Catalysis; Electrons; Esters; Molecular Structure; Palladium; Phosphines; Stereoisomerism; Sulfonic Acids | 2014 |
Palladium-catalyzed α-arylation of benzylic phosphine oxides.
Topics: Benzene Derivatives; Catalysis; Hydrocarbons, Brominated; Molecular Structure; Organometallic Compounds; Oxides; Palladium; Phosphines | 2014 |
Palladium-catalyzed one-pot three- or four-component coupling of aryl iodides, alkynes, and amines through C-N bond cleavage: efficient synthesis of indole derivatives.
Topics: Alkynes; Amines; Catalysis; Heterocyclic Compounds; Indoles; Iodides; Ligands; Molecular Structure; Palladium; Phosphines | 2014 |
Gyroscope-like molecules consisting of PdX₂/PtX₂ rotators within three-spoke dibridgehead diphosphine stators: syntheses, substitution reactions, structures, and dynamic properties.
Topics: Coordination Complexes; Crystallography, X-Ray; Halogens; Isomerism; Magnetic Resonance Spectroscopy; Molecular Conformation; Palladium; Phosphines; Platinum | 2014 |
Palladium-catalyzed air-based oxidative coupling of arylboronic acids with H-phosphine oxides leading to aryl phosphine oxides.
Topics: Air; Boronic Acids; Catalysis; Oxidative Coupling; Oxides; Palladium; Phosphines | 2014 |
Congested C-C bonds by Pd-catalyzed enantioselective allyl-allyl cross-coupling, a mechanism-guided solution.
Topics: Alkadienes; Allyl Compounds; Boron Compounds; Catalysis; Ligands; Models, Molecular; Palladium; Phosphines; Stereoisomerism | 2014 |
NiXantphos: a deprotonatable ligand for room-temperature palladium-catalyzed cross-couplings of aryl chlorides.
Topics: Catalysis; Chlorides; Hydrocarbons, Aromatic; Ligands; Models, Molecular; Oxidation-Reduction; Palladium; Phosphines; Protons; Temperature | 2014 |
Palladium/sulfoxide-phosphine-catalyzed highly enantioselective allylic etherification and amination.
Topics: Alkenes; Amination; Ethers; Palladium; Phosphines; Stereoisomerism; Substrate Specificity; Sulfoxides | 2014 |
Thioetherification of chloroheteroarenes: a binuclear catalyst promotes wide scope and high functional-group tolerance.
Topics: Catalysis; Furans; Halogenation; Ligands; Models, Molecular; Palladium; Phenols; Phosphines; Pyrazines; Pyridines; Quinolines; Sulfhydryl Compounds; Sulfides; Thiazoles | 2014 |
Solvation and stabilization of palladium nanoparticles in phosphonium-based ionic liquids: a combined infrared spectroscopic and density functional theory study.
Topics: Computer Simulation; Ionic Liquids; Ions; Metal Nanoparticles; Models, Chemical; Models, Molecular; Palladium; Phosphines; Quantum Theory; Solvents; Spectrophotometry, Infrared | 2014 |
Heteroaryldifluoromethylation of organoborons catalyzed by palladium: facile access to aryl(heteroaryl)difluoromethanes.
Topics: Catalysis; Drug Discovery; Hydrocarbons, Fluorinated; Ligands; Molecular Structure; Palladium; Phosphines | 2014 |
Virtually instantaneous, room-temperature [(11)C]-cyanation using biaryl phosphine Pd(0) complexes.
Topics: Carbon Radioisotopes; Kinetics; Nitriles; Organometallic Compounds; Palladium; Phosphines; Temperature | 2015 |
Impedance technology reveals correlations between cytotoxicity and lipophilicity of mono and bimetallic phosphine complexes.
Topics: Carbon-13 Magnetic Resonance Spectroscopy; Cell Line; Cell Survival; Dose-Response Relationship, Drug; Electric Impedance; Gold; Humans; Hydrophobic and Hydrophilic Interactions; Models, Molecular; Molecular Structure; Organometallic Compounds; Palladium; Phosphines; Proton Magnetic Resonance Spectroscopy; Structure-Activity Relationship | 2015 |
Synthesis of Functionalized Alkylidene Indanes and Indanones through Tandem Phosphine-Palladium Catalysis.
Topics: Catalysis; Cyclization; Indans; Molecular Structure; Palladium; Phosphines; Stereoisomerism; Sulindac | 2015 |
Palladium(0)/PAr3 -Catalyzed Intermolecular Amination of C(sp(3) )H Bonds: Synthesis of β-Amino Acids.
Topics: Amination; Amino Acids; Carbon; Catalysis; Hydrogen; Oxidation-Reduction; Palladium; Phosphines | 2015 |
Catalyst-Switchable Regiocontrol in the Direct Arylation of Remote C-H Groups in Pyrazolo[1,5-a]pyrimidines.
Topics: Catalysis; Palladium; Phosphines; Pyrazoles; Pyrimidines; Stereoisomerism | 2015 |
Palladacycle promoted base controlled regio- and enantioselective hydrophosphination of 2-pyridylacrylate/amide and the cytotoxicity of their gold complexes.
Topics: Acrylates; Alkenes; Amides; Antineoplastic Agents; Cell Line, Tumor; Gold; Humans; Models, Molecular; Molecular Conformation; Organometallic Compounds; Palladium; Phosphines; Stereoisomerism | 2015 |
Palladium(II) complexes with tris(2-carboxyethyl)phosphine, structure, reactions and cytostatic activity.
Topics: Crystallography, X-Ray; Cytostatic Agents; Models, Molecular; Palladium; Phosphines; Structure-Activity Relationship | 2016 |
Exploiting Aryl Mesylates and Tosylates in Catalytic Mono-α-arylation of Aryl- and Heteroarylketones.
Topics: Catalysis; Heterocyclic Compounds; Ketones; Mesylates; Molecular Structure; Palladium; Phosphines; Tosyl Compounds | 2016 |
Caution in the Use of Nonlinear Effects as a Mechanistic Tool for Catalytic Enantioconvergent Reactions: Intrinsic Negative Nonlinear Effects in the Absence of Higher-Order Species.
Topics: Catalysis; Kinetics; Molecular Structure; Palladium; Phosphines; Stereoisomerism | 2017 |
Modular ipso/ ortho Difunctionalization of Aryl Bromides via Palladium/Norbornene Cooperative Catalysis.
Topics: Acylation; Alkylation; Amination; Bromides; Catalysis; Crystallography, X-Ray; Models, Molecular; Norbornanes; Palladium; Phosphines | 2018 |
Heck Transformations of Biological Compounds Catalyzed by Phosphine-Free Palladium.
Topics: Acyclic Monoterpenes; Allylbenzene Derivatives; Anisoles; Boronic Acids; Catalysis; Chemistry, Organic; Eugenol; Iodobenzenes; Monoterpenes; Palladium; Phosphines; Propanols | 2018 |
New Rigid Polycyclic Bis(phosphane) for Asymmetric Catalysis.
Topics: Catalysis; Coordination Complexes; Ligands; Palladium; Phosphines; Polycyclic Compounds | 2019 |
Spiro Indane-Based Phosphine-Oxazolines as Highly Efficient P,N Ligands for Enantioselective Pd-Catalyzed Allylic Alkylation of Indoles and Allylic Etherification.
Topics: Alkylation; Biological Products; Catalysis; Indoles; Molecular Structure; Palladium; Phosphines; Spiro Compounds | 2019 |
Improved Process for the Palladium-Catalyzed C-O Cross-Coupling of Secondary Alcohols.
Topics: Alcohols; Carbon; Catalysis; Ligands; Oxidation-Reduction; Oxygen; Palladium; Phosphines | 2020 |
Small Phosphine Ligands Enable Selective Oxidative Addition of Ar-O over Ar-Cl Bonds at Nickel(0).
Topics: Catalysis; Density Functional Theory; Hydrocarbons, Chlorinated; Ligands; Mesylates; Molecular Structure; Nickel; Oxidation-Reduction; Palladium; Phosphines | 2020 |
Unified Approach to Furan Natural Products via Phosphine-Palladium Catalysis.
Topics: Biological Products; Catalysis; Furans; Molecular Structure; Organometallic Compounds; Palladium; Phosphines | 2021 |
Computational Analysis on the Pd-Catalyzed C-N Coupling of Ammonia with Aryl Bromides Using a Chelate Phosphine Ligand.
Topics: Ammonia; Bromides; Catalysis; Ligands; Palladium; Phosphines | 2021 |
Enantioselective Construction of Axially Chiral Azepine-Containing P,N-Ligands from l-Alanine.
Topics: Alanine; Alkylation; Azepines; Catalysis; Indoles; Ligands; Molecular Structure; Palladium; Phosphines; Stereoisomerism | 2021 |
An indole-amide-based phosphine ligand enabling a general palladium-catalyzed sterically hindered Suzuki-Miyaura cross-coupling reaction.
Topics: Amides; Catalysis; Indoles; Ligands; Palladium; Phosphines | 2022 |
Cationic palladium(II)-indenyl complexes bearing phosphines as ancillary ligands: synthesis, and study of indenyl amination and anticancer activity.
Topics: Amination; Amines; Cations; Ligands; Palladium; Phosphines | 2022 |
A visible-light activated secondary phosphine oxide ligand enabling Pd-catalyzed radical cross-couplings.
Topics: Catalysis; Ligands; Oxides; Palladium; Phosphines | 2022 |
Cyclometallated Palladium(II) Complexes: An Approach to the First Dinuclear Bis(iminophosphorane)phosphane-[C,N,S] Metallacycle.
Topics: Crystallography, X-Ray; Ligands; Methane; Palladium | 2022 |
Genetically Encoded Phosphine Ligand for Metalloprotein Design.
Topics: Ligands; Metalloproteins; Palladium; Phosphines | 2022 |
Facile Assembly of Modular-Type Phosphines for Tackling Modern Arylation Processes.
Topics: Carbon; Chlorides; Indoles; Ligands; Palladium; Phosphines | 2022 |
Hybrid Phosphine/Amino-Acid Ligands Built on Phenyl and Ferrocenyl Platforms: Application in the Suzuki Coupling of o-Dibromobenzene with Fluorophenylboronic Acid.
Topics: Amino Acids; Palladium; Phosphines | 2023 |