Page last updated: 2024-08-22

fluorosulfonic acid and palladium

fluorosulfonic acid has been researched along with palladium in 7 studies

Research

Studies (7)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's3 (42.86)29.6817
2010's4 (57.14)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Andreotti, L; Borisov, S; Maldotti, A; Molinari, A; Vasil'ev, V1
Kuayou, J; Li, Q; Lim, SH; Lin, J; Wei, J1
Chang, KS; Lee, CH; Wang, SC; Wen, MF; Yuan, CJ1
Cong, Y; Li, C; Li, G; Li, N; Wang, A; Wang, X; Wang, Z; Zhang, T1
Cong, Y; Li, G; Li, N; Li, S; Wang, A; Wang, X; Zhang, T1
Han, K; Hong, SW; Lee, HK; Lee, JY; Lee, WK; Shim, J1
Huang, NM; Mohamed Noor, A; Rameshkumar, P; Yusoff, N1

Other Studies

7 other study(ies) available for fluorosulfonic acid and palladium

ArticleYear
Photoinitiated catalysis in Nafion membranes containing palladium(II) meso-tetrakis(N-methyl-4-pyridyl)porphyrin and iron(III) meso-tetrakis-(2,6-dichlorophenyl)porphyrin for O2-mediated oxidations of alkenes.
    Chemistry (Weinheim an der Bergstrasse, Germany), 2001, Aug-17, Volume: 7, Issue:16

    Topics: Alkenes; Catalysis; Ferric Compounds; Fluorocarbon Polymers; Indicators and Reagents; Iron; Membranes, Artificial; Metalloporphyrins; Models, Molecular; Molecular Conformation; Molecular Structure; Oxidation-Reduction; Oxygen; Palladium; Photolysis; Structure-Activity Relationship

2001
A glucose biosensor based on electrodeposition of palladium nanoparticles and glucose oxidase onto Nafion-solubilized carbon nanotube electrode.
    Biosensors & bioelectronics, 2005, May-15, Volume: 20, Issue:11

    Topics: Biosensing Techniques; Electrochemistry; Electroplating; Enzymes, Immobilized; Equipment Design; Equipment Failure Analysis; Fluorocarbon Polymers; Glucose; Glucose Oxidase; Nanotubes; Nanotubes, Carbon; Palladium; Solubility

2005
Comparison of amperometric biosensors fabricated by palladium sputtering, palladium electrodeposition and Nafion/carbon nanotube casting on screen-printed carbon electrodes.
    Biosensors & bioelectronics, 2007, Jan-15, Volume: 22, Issue:6

    Topics: Biosensing Techniques; Crystallization; Electrochemistry; Enzymes, Immobilized; Equipment Design; Equipment Failure Analysis; Fluorocarbon Polymers; Glucose; Glucose Oxidase; Hot Temperature; Microelectrodes; Nanotubes, Carbon; Palladium; Reproducibility of Results; Sensitivity and Specificity

2007
Synthesis of high-quality diesel with furfural and 2-methylfuran from hemicellulose.
    ChemSusChem, 2012, Volume: 5, Issue:10

    Topics: Alkylation; Carbon; Catalysis; Chemistry Techniques, Synthetic; Fluorocarbon Polymers; Furaldehyde; Furans; Gasoline; Green Chemistry Technology; Hydrogenation; Palladium; Polysaccharides

2012
Synthesis of renewable diesel with hydroxyacetone and 2-methyl-furan.
    Chemical communications (Cambridge, England), 2013, Jun-28, Volume: 49, Issue:51

    Topics: Acetone; Alkanes; Alkylation; Catalysis; Fluorocarbon Polymers; Furans; Gasoline; Palladium

2013
A new deposition method for the preparation of Pt-Pd nanocatalysts on a nafion coated carbon black via the reduction of metallic precursors in a drying process.
    Journal of nanoscience and nanotechnology, 2013, Volume: 13, Issue:5

    Topics: Catalysis; Crystallization; Desiccation; Fluorocarbon Polymers; Macromolecular Substances; Materials Testing; Metal Nanoparticles; Molecular Conformation; Palladium; Particle Size; Platinum; Soot; Surface Properties

2013
Amperometric determination of L-cysteine using a glassy carbon electrode modified with palladium nanoparticles grown on reduced graphene oxide in a Nafion matrix.
    Mikrochimica acta, 2018, 04-03, Volume: 185, Issue:4

    Topics: Carbon; Cysteine; Electrochemical Techniques; Electrodes; Fluorocarbon Polymers; Graphite; Humans; Limit of Detection; Metal Nanoparticles; Oxides; Palladium

2018