Journal of Colloid and Interface Science, ISSN 0021-9797, 01/2019, Volume 534, pp. 131 - 141
In this present study we have developed method for the synthesis of MoSe nanosheets following a simple hydrothermal technique. Palladium (Pd) and rhodium (Rh)...
Heterostructure | MoSe | Nanosheets | Metal nanoparticle | Hydrogen evolution reaction | Wide pH conditions
Heterostructure | MoSe | Nanosheets | Metal nanoparticle | Hydrogen evolution reaction | Wide pH conditions
Journal Article
2.
Full Text
Nanosheets of MoSe.sub.2@M function as widespread pH tolerable hydrogen evolution catalyst
Journal of Colloid And Interface Science, ISSN 0021-9797, 01/2019, Volume 534, p. 131
In this present study we have developed method for the synthesis of MoSe.sub.2 nanosheets following a simple hydrothermal technique. Palladium (Pd) and rhodium...
Palladium catalysts | Hydrogen | Palladium | Hydrogen-ion concentration
Palladium catalysts | Hydrogen | Palladium | Hydrogen-ion concentration
Journal Article
ISSN 1144-0546, 10/2019, Volume 43, Issue 39, pp. 15768 - 15776
To avoid a massive energy crisis in the near future, it becomes urgent to develop efficient catalysts for the oxygen evolution reaction (OER) in water...
Journal Article
Electrochimica Acta, ISSN 0013-4686, 05/2018, Volume 273, p. 462
Development of cost-effective, efficient electrocatalyst for oxygen evolution reaction (OER) is a challenging issue as OER has sluggish reaction kinetics due...
Nickel ferrites | Oxygen | Intermetallic compounds | Cobalt ferrites | Chemical reactions | Nanostructure | Chemical compounds | Electrocatalysis | Organic chemistry | Iron compounds | Plates (structural members) | Reaction kinetics | Nickel compounds | Oxidation | Energy efficiency | Chemical evolution | Atomic structure | Chemical synthesis | Nanostructured materials | Current density
Nickel ferrites | Oxygen | Intermetallic compounds | Cobalt ferrites | Chemical reactions | Nanostructure | Chemical compounds | Electrocatalysis | Organic chemistry | Iron compounds | Plates (structural members) | Reaction kinetics | Nickel compounds | Oxidation | Energy efficiency | Chemical evolution | Atomic structure | Chemical synthesis | Nanostructured materials | Current density
Journal Article
Electrochimica Acta, ISSN 0013-4686, 05/2018, Volume 273, p. 462
Development of cost-effective, efficient electrocatalyst for oxygen evolution reaction (OER) is a challenging issue as OER has sluggish reaction kinetics due...
Chemical reaction, Rate of
Chemical reaction, Rate of
Journal Article
ISSN 1144-0546, 5/2019, Volume 43, Issue 18, pp. 71 - 71
Solar water splitting devices with high efficiency need to be developed, utilizing low cost and efficient materials. For this purpose, ZnO@CdS heterostructure...
Journal Article
New Journal of Chemistry, ISSN 1144-0546, 01/2019, Volume 43, Issue 18, pp. 7001 - 7010
Solar water splitting devices with high efficiency need to be developed, utilizing low cost and efficient materials. For this purpose, ZnO@CdS heterostructure...
Water splitting | Fluorine | Cadmium sulfides | Nanostructure | Silver chlorides | Tin oxides | Current carriers | Photoelectric effect | Energy gap | Absorbance | Quantum efficiency | Photovoltaic cells | Light | Optical activity | Zinc oxide | Carrier density | Photoelectric emission | Heterostructures
Water splitting | Fluorine | Cadmium sulfides | Nanostructure | Silver chlorides | Tin oxides | Current carriers | Photoelectric effect | Energy gap | Absorbance | Quantum efficiency | Photovoltaic cells | Light | Optical activity | Zinc oxide | Carrier density | Photoelectric emission | Heterostructures
Journal Article
New Journal of Chemistry, ISSN 1144-0546, 01/2019, Volume 43, Issue 39, pp. 15768 - 15776
To avoid a massive energy crisis in the near future, it becomes urgent to develop efficient catalysts for the oxygen evolution reaction (OER) in water...
Water splitting | Catalysts | Cobalt oxides | Sulfurization | Organic chemistry | Sulfidation | Anion exchanging | Chemical evolution | Chemical synthesis | Cobalt sulfide | Current density | Heterostructures | Sheets
Water splitting | Catalysts | Cobalt oxides | Sulfurization | Organic chemistry | Sulfidation | Anion exchanging | Chemical evolution | Chemical synthesis | Cobalt sulfide | Current density | Heterostructures | Sheets
Journal Article
Catalysis Science & Technology, ISSN 2044-4753, 11/2019, Volume 9, Issue 23, pp. 6769 - 6781
Photoelectrochemical (PEC) water splitting being a greener and ecofriendly pathway has become a renowned technique to generate hydrogen (H2). To attain...
Journal Article
Electrochimica Acta, ISSN 0013-4686, 05/2018, Volume 273, pp. 462 - 473
Development of cost-effective, efficient electrocatalyst for oxygen evolution reaction (OER) is a challenging issue as OER has sluggish reaction kinetics due...
CoFe2O4 | NiFe2O4 | Nanoplate | Nanosheet | Oxygen evolution reaction | CoFe | NiFe | ELECTROCATALYTIC WATER OXIDATION | ELECTROCHEMISTRY | BIFUNCTIONAL ELECTROCATALYST | CARBON NANOTUBES | DOUBLE-HYDROXIDE | SUPPORTED COFE2O4 | NANOPARTICLES | FACILE SYNTHESIS | REDUCTION | HYDROGEN-PEROXIDE | HOLLOW NANOSPHERES
CoFe2O4 | NiFe2O4 | Nanoplate | Nanosheet | Oxygen evolution reaction | CoFe | NiFe | ELECTROCATALYTIC WATER OXIDATION | ELECTROCHEMISTRY | BIFUNCTIONAL ELECTROCATALYST | CARBON NANOTUBES | DOUBLE-HYDROXIDE | SUPPORTED COFE2O4 | NANOPARTICLES | FACILE SYNTHESIS | REDUCTION | HYDROGEN-PEROXIDE | HOLLOW NANOSPHERES
Journal Article
ChemElectroChem, ISSN 2196-0216, 10/2019, Volume 6, Issue 20, pp. 5301 - 5312
When designing a device for energy conversion, development of a highly active catalyst for OER (oxygen evolution reaction) reaction in alkaline medium is of...
binder-free conducting substrate | 2D nanosheet | electrocatalysis | thiospinel | Water splitting | Saline water | Catalysts | Salt water | Sodium sulfates | Carbon | Copper converters | Electrode materials | Morphology | Energy conversion | Copper compounds | Cloth | X ray photoelectron spectroscopy | Chemical evolution | Noble metals | Sulfur | Cobalt sulfide | Current density
binder-free conducting substrate | 2D nanosheet | electrocatalysis | thiospinel | Water splitting | Saline water | Catalysts | Salt water | Sodium sulfates | Carbon | Copper converters | Electrode materials | Morphology | Energy conversion | Copper compounds | Cloth | X ray photoelectron spectroscopy | Chemical evolution | Noble metals | Sulfur | Cobalt sulfide | Current density
Journal Article
Journal of Colloid And Interface Science, ISSN 0021-9797, 01/2019, Volume 534, pp. 131 - 141
In this present study we have developed method for the synthesis of MoSe nanosheets following a simple hydrothermal technique. Palladium (Pd) and rhodium (Rh)...
Heterostructure | Nanosheets | Hydrogen evolution reaction | Wide pH conditions | Metal nanoparticle | MoSe2 | HIGH-PERFORMANCE | ENERGY | METHANOL | ENHANCED ELECTROCATALYTIC ACTIVITY | MOS2 ULTRATHIN NANOSHEETS | CHEMISTRY, PHYSICAL | WATER OXIDATION | ACTIVE EDGE SITES | SURFACE | ELECTRODE | EFFICIENT
Heterostructure | Nanosheets | Hydrogen evolution reaction | Wide pH conditions | Metal nanoparticle | MoSe2 | HIGH-PERFORMANCE | ENERGY | METHANOL | ENHANCED ELECTROCATALYTIC ACTIVITY | MOS2 ULTRATHIN NANOSHEETS | CHEMISTRY, PHYSICAL | WATER OXIDATION | ACTIVE EDGE SITES | SURFACE | ELECTRODE | EFFICIENT
Journal Article
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, ISSN 0888-5885, 05/2019, Volume 58, Issue 17, pp. 7200 - 7208
Photoelectrochemical water splitting has gained considerable interest in the past few decades because of its potential for harvesting solar light for H-2...
THIN-FILMS | ENGINEERING, CHEMICAL | ZNFE2O4 | OXIDE | ALPHA-FE2O3 NANOARRAYS | PERFORMANCE | ENHANCEMENT | CHARGE SEPARATION | ABSORPTION | TIO2
THIN-FILMS | ENGINEERING, CHEMICAL | ZNFE2O4 | OXIDE | ALPHA-FE2O3 NANOARRAYS | PERFORMANCE | ENHANCEMENT | CHARGE SEPARATION | ABSORPTION | TIO2
Journal Article
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Ag2S/Ag Heterostructure: A Promising Electrocatalyst for the Hydrogen Evolution Reaction
Langmuir, ISSN 0743-7463, 04/2017, Volume 33, Issue 13, pp. 3178 - 3186
Different metal chalcogenides, being a potential candidate for hydrogen evolution catalysts, have attracted enormous attention in the field of water splitting....
FACILE FABRICATION | MOS2 | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSHEETS | CATALYST | CHEMISTRY, MULTIDISCIPLINARY | ARRAYS | NANOPARTICLES | DEGRADATION | NANOTUBES | EFFICIENT | WATER
FACILE FABRICATION | MOS2 | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSHEETS | CATALYST | CHEMISTRY, MULTIDISCIPLINARY | ARRAYS | NANOPARTICLES | DEGRADATION | NANOTUBES | EFFICIENT | WATER
Journal Article
NEW JOURNAL OF CHEMISTRY, ISSN 1144-0546, 10/2019, Volume 43, Issue 39, pp. 15768 - 15776
To avoid a massive energy crisis in the near future, it becomes urgent to develop efficient catalysts for the oxygen evolution reaction (OER) in water...
NANOPARTICLES | COBALT OXIDE | REDUCTION REACTION | PERFORMANCE | BIFUNCTIONAL ELECTROCATALYST | GRAPHENE | SURFACE | WATER OXIDATION | NANOSHEETS | CHEMISTRY, MULTIDISCIPLINARY | NICKEL-HYDROXIDE
NANOPARTICLES | COBALT OXIDE | REDUCTION REACTION | PERFORMANCE | BIFUNCTIONAL ELECTROCATALYST | GRAPHENE | SURFACE | WATER OXIDATION | NANOSHEETS | CHEMISTRY, MULTIDISCIPLINARY | NICKEL-HYDROXIDE
Journal Article
ChemElectroChem, ISSN 2196-0216, 07/2019, Volume 6, Issue 13, pp. 3488 - 3498
Designing metal hydroxide electrocatalysts with high efficiency to overcome the slow reaction kinetics of the oxygen evolution reaction (OER) is considered as...
conducting carbon cloth | doping, oxygen evolution reaction | 2D materials | nickel hydroxide/nickel oxyhydroxide | ELECTROCHEMISTRY | oxygen evolution reaction | PERFORMANCE | nickel oxyhydroxide | doping | NANOSHEETS | NI-BASED HYDROXIDES | ALKALINE | HIGHLY EFFICIENT | ELECTROCATALYSTS | ARRAYS | HYDROGEN | COBALT OXIDE | nickel hydroxide | WATER | Electrocatalysts | Doping | Reaction kinetics | Energy sources | Nickel compounds | Iron | Nickel | Photoelectrons | Chemical evolution | Sheets
conducting carbon cloth | doping, oxygen evolution reaction | 2D materials | nickel hydroxide/nickel oxyhydroxide | ELECTROCHEMISTRY | oxygen evolution reaction | PERFORMANCE | nickel oxyhydroxide | doping | NANOSHEETS | NI-BASED HYDROXIDES | ALKALINE | HIGHLY EFFICIENT | ELECTROCATALYSTS | ARRAYS | HYDROGEN | COBALT OXIDE | nickel hydroxide | WATER | Electrocatalysts | Doping | Reaction kinetics | Energy sources | Nickel compounds | Iron | Nickel | Photoelectrons | Chemical evolution | Sheets
Journal Article
17.
Full Text
ZnO@CdS heterostructures: an efficient photoanode for photoelectrochemical water splitting
NEW JOURNAL OF CHEMISTRY, ISSN 1144-0546, 05/2019, Volume 43, Issue 18, pp. 7001 - 7010
Solar water splitting devices with high efficiency need to be developed, utilizing low cost and efficient materials. For this purpose, ZnO@CdS heterostructure...
OXIDE | PERFORMANCE | CONSTRUCTION | NANODISKS | NANOWIRE ARRAYS | GENERATION | FABRICATION | SEPARATION | CORE/SHELL NANORODS | CHEMISTRY, MULTIDISCIPLINARY | PHOTOCATALYST
OXIDE | PERFORMANCE | CONSTRUCTION | NANODISKS | NANOWIRE ARRAYS | GENERATION | FABRICATION | SEPARATION | CORE/SHELL NANORODS | CHEMISTRY, MULTIDISCIPLINARY | PHOTOCATALYST
Journal Article
Journal of colloid and interface science, 09/2018, Volume 534, p. 131
In this present study we have developed method for the synthesis of MoSe nanosheets following a simple hydrothermal technique. Palladium (Pd) and rhodium (Rh)...
Journal Article
19.
Full Text
Ag 2 S/Ag Heterostructure: A Promising Electrocatalyst for the Hydrogen Evolution Reaction
Langmuir : the ACS journal of surfaces and colloids, 04/2017, Volume 33, Issue 13, p. 3178
Different metal chalcogenides, being a potential candidate for hydrogen evolution catalysts, have attracted enormous attention in the field of water splitting....
Journal Article
ACS Omega, ISSN 2470-1343, 11/2017, Volume 2, Issue 11, pp. 7559 - 7567
Development of a stable catalyst that can efficiently function for longer time for energy conversion process in water splitting is a challenging work. Here,...
CO3O4 | WATER OXIDATION | CHEMISTRY, MULTIDISCIPLINARY
CO3O4 | WATER OXIDATION | CHEMISTRY, MULTIDISCIPLINARY
Journal Article
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