hydrogen has been researched along with perovskite in 18 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 4 (22.22) | 29.6817 |
2010's | 7 (38.89) | 24.3611 |
2020's | 7 (38.89) | 2.80 |
Authors | Studies |
---|---|
Adamski, A; Bueno-López, A; Illán-Gómez, MJ; López-Suárez, FE; Trawczynski, J; Ura, B | 1 |
Huang, Y; Li, J; Li, Y; Lin, J; Wei, Y; Wu, J | 1 |
Deng, J; Dong, J; Lan, X; Remmel, K; Tang, X; Xiao, H | 1 |
Bae, SW; Borse, PH; Hwang, DW; Jang, JS; Ji, SM; Kim, HG; Lee, JS | 1 |
Auluck, S; Kityk, IV; Reshak, AH; Saeed, Y; Shalaginov, MY | 1 |
Chen, G; Liu, J; Shan, R; Yan, B; Yao, J | 1 |
Afonso, AS; Dos Santos, WS; Fabris, JD; Mesquita, JP; Nascimento, LL; Oliveira, LC; Patrocínio, AO; Pereira, MC; Rodriguez, M; Silva, AC | 1 |
Hashimoto, H; Ichikawa, N; Ikegami, M; Inoue, H; Ishitani, O; Iwase, A; Kato, M; Kudo, A; Miyasaka, T; Numata, Y; Tamiaki, H | 1 |
Ghoniem, AF; Wu, XY | 1 |
Delgado-Niño, P; López-Vásquez, A; Salas-Siado, D | 1 |
Chakraborty, I; Chan, H; Choi, JH; Chubykin, AA; Kamath, G; Li, F; Narayanan, B; Ramadoss, K; Ramanathan, S; Roy, K; Saha, G; Sankaranarayanan, SKRS; Wu, Q; Zhang, HT; Zhang, Z; Zhou, H; Zuo, F | 1 |
Shen, L; Song, T; Wang, P; Wang, S; Xu, P; Yan, J | 1 |
Chen, Y; Duan, Y; Feng, XY; Gao, MR; Kong, Y; Ma, T; Wang, H; Yu, SH; Yu, X; Yu, ZY; Zhang, XL; Zheng, X; Zhu, J | 1 |
Choi, Y; Jang, JW; Jang, SY; Kim, H; Kim, J; Kim, YH; Lee, I; Lee, JW; Lee, SH; Mehrotra, R; Nguyen, TVT; Oh, H; Ryu, J; Yang, HY | 1 |
Al-Shami, A; Benyoussef, A; El Kassaoui, M; El Kenz, A; El Moutaouakil, A; Jouiad, M; Loulidi, M; Mansouri, Z; Mounkachi, O; Sibari, A | 1 |
Marques, HM; Varadwaj, A; Varadwaj, PR; Yamashita, K | 1 |
Khalil, RMA; Shafqat Hayat, M | 1 |
Ali, EM; Amjad, M; Awais, M; Bibi, S; Iqbal, I; Qureshi, S; Rafique, A; Rehman, B; Rehman, MA; Rehman, ZU; Sikiru, S | 1 |
18 other study(ies) available for hydrogen and perovskite
Article | Year |
---|---|
Copper catalysts for soot oxidation: alumina versus perovskite supports.
Topics: Aluminum Oxide; Calcium Compounds; Catalysis; Copper; Cyclohexanols; Hydrogen; Nitrates; Nitric Oxide; Oxidation-Reduction; Oxides; Oxygen; Soot; Spectrum Analysis; Temperature; Titanium | 2008 |
Fabrication and photocatalytic property of Pt-intercalated layered perovskite niobates H(1-x)LaNb(2-x)Mo(x)O(7) (x=0-0.15).
Topics: Calcium Compounds; Catalysis; Hydrogen; Light; Oxides; Photolysis; Platinum; Titanium | 2009 |
Perovskite-type oxide thin film integrated fiber optic sensor for high-temperature hydrogen measurement.
Topics: Calcium Compounds; Gases; Hot Temperature; Hydrogen; Oxides; Spectroscopy, Near-Infrared; Titanium | 2009 |
Photocatalytic hydrogen production from water-methanol mixtures using N-doped Sr2Nb2O7 under visible light irradiation: effects of catalyst structure.
Topics: Calcium Compounds; Catalysis; Chemistry, Physical; Electric Conductivity; Hydrogen; Light; Methanol; Nitrogen; Oxides; Oxygen; Photochemistry; Strontium; Titanium; Water | 2005 |
First-principles calculations of structural, elastic, electronic, and optical properties of perovskite-type KMgH3 crystals: novel hydrogen storage material.
Topics: Calcium Compounds; Elasticity; Electrons; Hydrogen; Magnesium; Models, Molecular; Molecular Conformation; Optical Phenomena; Oxides; Potassium; Titanium | 2011 |
Biomass to hydrogen-rich syngas via catalytic steam gasification of bio-oil/biochar slurry.
Topics: Biomass; Biotechnology; Calcium Compounds; Carbon; Catalysis; Charcoal; Gases; Hot Temperature; Hydrogen; Oxides; Steam; Temperature; Titanium | 2015 |
A hole inversion layer at the BiVO4/Bi4V2O11 interface produces a high tunable photovoltage for water splitting.
Topics: Bismuth; Calcium Compounds; Electrochemical Techniques; Hydrogen; Oxides; Photochemical Processes; Semiconductors; Solar Energy; Titanium; Vanadates; Water | 2016 |
Solar Water Splitting Utilizing a SiC Photocathode, a BiVO
Topics: Bismuth; Calcium Compounds; Carbon Compounds, Inorganic; Electrochemical Techniques; Electrodes; Hydrogen; Oxidation-Reduction; Oxides; Oxygen; Photochemical Processes; Silicon Compounds; Solar Energy; Sunlight; Titanium; Vanadates; Water | 2017 |
Hydrogen-assisted Carbon Dioxide Thermochemical Reduction on La
Topics: Calcium; Calcium Compounds; Carbon Dioxide; Ferric Compounds; Hot Temperature; Hydrogen; Kinetics; Lanthanum; Membranes, Artificial; Models, Chemical; Oxidation-Reduction; Oxides; Oxygen; Titanium | 2018 |
Photocatalytic hydrogen production by strontium titanate-based perovskite doped europium (Sr
Topics: Calcium Compounds; Catalysis; Edetic Acid; Europium; Hydrogen; Light; Oxides; Semiconductors; Strontium; Titanium; Ultraviolet Rays; Zirconium | 2019 |
Perovskite nickelates as bio-electronic interfaces.
Topics: Animals; Bioengineering; Biosensing Techniques; Brain-Computer Interfaces; Calcium Compounds; Corpus Striatum; Electric Stimulation; Electrodes; Electronics; Electrons; Glucose; Glucose Oxidase; Hydrogen; Mice; Mice, Inbred C57BL; Molecular Dynamics Simulation; Neurotransmitter Agents; Oxidation-Reduction; Oxides; Titanium | 2019 |
Synergistic effects of lanthanum ferrite perovskite and hydrogen to promote ammonia production during microalgae catalytic pyrolysis process.
Topics: Ammonia; Biofuels; Biomass; Calcium Compounds; Ferric Compounds; Hot Temperature; Hydrogen; Lanthanum; Microalgae; Oxides; Pyrolysis; Titanium | 2021 |
General Synthesis of Tube-like Nanostructured Perovskite Oxides with Tunable Transition Metal-Oxygen Covalency for Efficient Water Electrooxidation in Neutral Media.
Topics: Calcium Compounds; Hydrogen; Oxides; Oxygen; Titanium; Transition Elements; Water | 2022 |
Bias-free solar hydrogen production at 19.8 mA cm
Topics: Biomass; Calcium Compounds; Carbon; Cellulose; Hydrogen; Lignin; Oxides; Titanium; Water | 2022 |
Photocatalytic Properties of ZnO:Al/MAPbI3/Fe2O3 Heterostructure: First-Principles Calculations.
Topics: Aluminum Oxide; Ferric Compounds; Hydrogen; Zinc; Zinc Oxide | 2023 |
Methylammonium Tetrel Halide Perovskite Ion Pairs and Their Dimers: The Interplay between the Hydrogen-, Pnictogen- and Tetrel-Bonding Interactions.
Topics: Hydrogen; Models, Molecular; Oxides | 2023 |
Ab-initio exploration of unique and substantial computational properties of double hydrides Cs
Topics: Electronics; Hydrogen; Oxides; Reproducibility of Results | 2023 |
Ab initio insight into the physical properties of MgXH
Topics: Calcium Compounds; Hydrogen; Oxides; Thermodynamics | 2023 |