Scientific Reports, ISSN 2045-2322, 2013, Volume 3, Issue 1, p. 1765
Proton exchange membrane fuel cells are promising candidates for a clean and efficient energy conversion in the future, the development of carbon based...
CATHODE | SPECTROSCOPY | METAL-CATALYSTS | POLYANILINE | STABILITY | MULTIDISCIPLINARY SCIENCES | NANOCRYSTALS | HIGH ELECTROCATALYTIC ACTIVITY | NANOSHEETS | IRON | ELECTROLYTE FUEL-CELLS | Carbon | Fuel cells
CATHODE | SPECTROSCOPY | METAL-CATALYSTS | POLYANILINE | STABILITY | MULTIDISCIPLINARY SCIENCES | NANOCRYSTALS | HIGH ELECTROCATALYTIC ACTIVITY | NANOSHEETS | IRON | ELECTROLYTE FUEL-CELLS | Carbon | Fuel cells
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 05/2019, Volume 245, pp. 721 - 732
Traditional 3D self-standing electrodes for lithium-oxygen (Li-O ) batteries require a high cost and complex preparation process that restrict their...
Prussian blue analogues | Cathode 3D self-standing | Biomass derived carbon | Li-O2 battery | Oxygen | Diffusion rate | Catalysts | Intermetallic compounds | Lithium | Raw materials | Catalytic activity | Batteries | Biomass | Three dimensional composites | Chemical reduction | Carbonization | Electrodes | Iron compounds | Metal air batteries | Pigments | Nickel compounds | Catalysis | Chemical evolution | Specific capacity | Cathodes
Prussian blue analogues | Cathode 3D self-standing | Biomass derived carbon | Li-O2 battery | Oxygen | Diffusion rate | Catalysts | Intermetallic compounds | Lithium | Raw materials | Catalytic activity | Batteries | Biomass | Three dimensional composites | Chemical reduction | Carbonization | Electrodes | Iron compounds | Metal air batteries | Pigments | Nickel compounds | Catalysis | Chemical evolution | Specific capacity | Cathodes
Journal Article
Applied Catalysis A, General, ISSN 0926-860X, 03/2019, Volume 574, pp. 114 - 121
Lithium-oxygen (Li-O ) batteries are considered as promising candidates for future energy storage systems due to their super-high theoretical energy densities....
Electrocatalytic ORR/OER activity | Li-O2 battery | CoNiO2 | Free-standing cathodes | Electrochemical analysis | Oxygen | Transport properties | Stability | Storage systems | Electrocatalysts | Lithium | Raw materials | Carbon | Storage batteries | Silkworms | Chemical reduction | Carbonization | Metal air batteries | Synergistic effect | Chemical evolution | Commercialization | Cathodes | Energy storage
Electrocatalytic ORR/OER activity | Li-O2 battery | CoNiO2 | Free-standing cathodes | Electrochemical analysis | Oxygen | Transport properties | Stability | Storage systems | Electrocatalysts | Lithium | Raw materials | Carbon | Storage batteries | Silkworms | Chemical reduction | Carbonization | Metal air batteries | Synergistic effect | Chemical evolution | Commercialization | Cathodes | Energy storage
Journal Article
Nature Communications, ISSN 2041-1723, 05/2016, Volume 7, Issue 1, p. 11406
Immune checkpoint blockade of the inhibitory immune receptors PD-L1, PD-1 and CTLA-4 has emerged as a successful treatment strategy for several advanced...
DISRUPTION | IMMUNOTHERAPY | MULTIDISCIPLINARY SCIENCES | PROSTATE-CANCER | TARGETS | TUMOR-CELLS | ANTIGENS | ANTITUMOR IMMUNITY | BLOCKADE | EXPRESSION | EPITHELIAL OVARIAN-CANCER | T-Lymphocytes, Cytotoxic - immunology | B7-1 Antigen - genetics | Cell Proliferation | B7-1 Antigen - immunology | Humans | Ovarian Neoplasms - physiopathology | CTLA-4 Antigen - genetics | Drug Resistance, Neoplasm | CTLA-4 Antigen - immunology | MicroRNAs - immunology | B7-H1 Antigen - genetics | B7-H1 Antigen - immunology | Ovarian Neoplasms - genetics | Animals | Female | Mice | MicroRNAs - genetics | Ovarian Neoplasms - drug therapy | T-Lymphocytes, Cytotoxic - cytology | Ovarian Neoplasms - immunology
DISRUPTION | IMMUNOTHERAPY | MULTIDISCIPLINARY SCIENCES | PROSTATE-CANCER | TARGETS | TUMOR-CELLS | ANTIGENS | ANTITUMOR IMMUNITY | BLOCKADE | EXPRESSION | EPITHELIAL OVARIAN-CANCER | T-Lymphocytes, Cytotoxic - immunology | B7-1 Antigen - genetics | Cell Proliferation | B7-1 Antigen - immunology | Humans | Ovarian Neoplasms - physiopathology | CTLA-4 Antigen - genetics | Drug Resistance, Neoplasm | CTLA-4 Antigen - immunology | MicroRNAs - immunology | B7-H1 Antigen - genetics | B7-H1 Antigen - immunology | Ovarian Neoplasms - genetics | Animals | Female | Mice | MicroRNAs - genetics | Ovarian Neoplasms - drug therapy | T-Lymphocytes, Cytotoxic - cytology | Ovarian Neoplasms - immunology
Journal Article
Journal of Materials Science, ISSN 0022-2461, 3/2018, Volume 53, Issue 6, pp. 4395 - 4405
Rechargeable nonaqueous lithium–O2 batteries are considered as the most promising energy storage system for electric vehicles due to their extremely high...
Polymer Sciences | Crystallography and Scattering Methods | Materials Science | Materials Science, general | Classical Mechanics | Characterization and Evaluation of Materials | Continuum Mechanics and Mechanics of Materials | Lithium | Catalytic activity | Biomass | Carbon | Storage batteries | Silkworms | Rechargeable batteries | Flux density | Morphology | Electric vehicles | Catalysis | Cathodes | Energy storage
Polymer Sciences | Crystallography and Scattering Methods | Materials Science | Materials Science, general | Classical Mechanics | Characterization and Evaluation of Materials | Continuum Mechanics and Mechanics of Materials | Lithium | Catalytic activity | Biomass | Carbon | Storage batteries | Silkworms | Rechargeable batteries | Flux density | Morphology | Electric vehicles | Catalysis | Cathodes | Energy storage
Journal Article
Electrochimica Acta, ISSN 0013-4686, 06/2013, Volume 99, pp. 30 - 37
Vesicular nitrogen doped carbon (VNC) material, with BET surface area of high up to 555 m g , has been prepared by pyrolyzing the polyaniline covering on the...
Vesicular | Nitrogen doped | Oxygen reduction reaction | Polyaniline
Vesicular | Nitrogen doped | Oxygen reduction reaction | Polyaniline
Journal Article
Catalysis Letters, ISSN 1011-372X, 08/2019
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 05/2019, Volume 244, pp. 559 - 567
Rechargeable Li-CO batteries, which utilize CO into electrochemical energy storage systems, provide a promising strategy for alleviating the greenhouse effect...
Prussian blue analogues | Li-CO2 battery | Cathode | 3D free-standing | Biomass carbon | BIFUNCTIONAL ELECTROCATALYSTS | CO2 REDUCTION | GRAPHENE | CHEMISTRY, PHYSICAL | CATALYST | IDENTIFICATION | ENGINEERING, CHEMICAL | NANOPARTICLES | ENGINEERING, ENVIRONMENTAL | METAL | CAPTURE | Greenhouse effect | Battery cycles | Intermetallic compounds | Storage systems | Carbon dioxide | Catalytic activity | Biomass | High temperature | Storage batteries | Mass transfer | Rechargeable batteries | Fabrication | Iron compounds | Flux density | Pigments | Electrochemistry | Nickel compounds | Performance enhancement | Catalysis | Carbon capture and storage | Cathodes | Energy storage
Prussian blue analogues | Li-CO2 battery | Cathode | 3D free-standing | Biomass carbon | BIFUNCTIONAL ELECTROCATALYSTS | CO2 REDUCTION | GRAPHENE | CHEMISTRY, PHYSICAL | CATALYST | IDENTIFICATION | ENGINEERING, CHEMICAL | NANOPARTICLES | ENGINEERING, ENVIRONMENTAL | METAL | CAPTURE | Greenhouse effect | Battery cycles | Intermetallic compounds | Storage systems | Carbon dioxide | Catalytic activity | Biomass | High temperature | Storage batteries | Mass transfer | Rechargeable batteries | Fabrication | Iron compounds | Flux density | Pigments | Electrochemistry | Nickel compounds | Performance enhancement | Catalysis | Carbon capture and storage | Cathodes | Energy storage
Journal Article
Electrochimica Acta, ISSN 0013-4686, 10/2019, Volume 321, p. 134678
Due to their high energy density, lithium-sulfur (Li/S) batteries are among the most promising future power sources to replace modern lithium ion batteries,...
Polymerization | Sulfur-rich copolymer | Lithium-sulfur battery | Polysulfur | Polyaniline | ELEMENTAL SULFUR | ELECTROCHEMISTRY | NANOPARTICLES | PERFORMANCE | ELECTRODE | INVERSE VULCANIZATION | CATHODE MATERIAL | Power sources | Cycles | Polymer matrix composites | Graft copolymers | Stability | Segments | Lithium | Lithium sulfur batteries | Rechargeable batteries | Lithium-ion batteries | Electrode materials | Copolymers | Flux density | Electrical resistivity | Polymers | Sulfur | Low conductivity | Current density | Cathodes | Polyanilines
Polymerization | Sulfur-rich copolymer | Lithium-sulfur battery | Polysulfur | Polyaniline | ELEMENTAL SULFUR | ELECTROCHEMISTRY | NANOPARTICLES | PERFORMANCE | ELECTRODE | INVERSE VULCANIZATION | CATHODE MATERIAL | Power sources | Cycles | Polymer matrix composites | Graft copolymers | Stability | Segments | Lithium | Lithium sulfur batteries | Rechargeable batteries | Lithium-ion batteries | Electrode materials | Copolymers | Flux density | Electrical resistivity | Polymers | Sulfur | Low conductivity | Current density | Cathodes | Polyanilines
Journal Article
Ionics, ISSN 0947-7047, 11/2019, Volume 25, Issue 11, pp. 5297 - 5304
Li–S batteries are considered as candidates for the next-generation secondary batteries due to their high energy density (~ 1672 mAh g−1). However, poor...
Condensed Matter Physics | Prussian blue analogues | Chemistry | Li–S battery | Energy Storage | Renewable and Green Energy | CoFe alloy | Electrochemistry | Optical and Electronic Materials | Sulfur cathode | Biomass-derived carbon
Condensed Matter Physics | Prussian blue analogues | Chemistry | Li–S battery | Energy Storage | Renewable and Green Energy | CoFe alloy | Electrochemistry | Optical and Electronic Materials | Sulfur cathode | Biomass-derived carbon
Journal Article
Applied Catalysis B: Environmental, ISSN 0926-3373, 05/2019, pp. 559 - 567
Rechargeable Li-CO batteries, which utilize CO into electrochemical energy storage systems, provide a promising strategy for alleviating the greenhouse effect...
Prussian blue analogues | Li-CO | Cathode | 3D free-standing | battery | Biomass carbon
Prussian blue analogues | Li-CO | Cathode | 3D free-standing | battery | Biomass carbon
Journal Article
Applied Catalysis A, General, ISSN 0926-860X, 03/2019, Volume 574, p. 114
* Biomass derived N-doped carbon nanonet was used as the support and CoNiO.sub.2 nanoneedles as the catalyst. Lithium-oxygen (Li-O.sub.2) batteries are...
Electrochemical reactions | Electrochemistry | Electrolytes | Raw materials | Batteries
Electrochemical reactions | Electrochemistry | Electrolytes | Raw materials | Batteries
Journal Article
Applied Catalysis A: General, ISSN 0926-860X, 03/2019, pp. 114 - 121
Lithium-oxygen (Li-O ) batteries are considered as promising candidates for future energy storage systems due to their super-high theoretical energy densities....
Electrocatalytic ORR/OER activity | CoNiO | Li-O | battery | Free-standing cathodes
Electrocatalytic ORR/OER activity | CoNiO | Li-O | battery | Free-standing cathodes
Journal Article
SCIENTIFIC REPORTS, ISSN 2045-2322, 01/2017, Volume 7, Issue 1, p. 39973
Novel semiconductor photocatalysts have been the research focus and received much attention in recent years. The key issues for novel semiconductor...
NANOCOMPOSITES | PERFORMANCE | MULTIDISCIPLINARY SCIENCES | HIERARCHICAL NANOSTRUCTURES | COMPOSITES | EFFICIENT | GREEN | CARBON NANOTUBES | ARRAYS | Photodegradation | Nanocrystals | Nanocomposites | Photocatalysis | Migration | Radiation | Etching | pH effects | Methylene blue
NANOCOMPOSITES | PERFORMANCE | MULTIDISCIPLINARY SCIENCES | HIERARCHICAL NANOSTRUCTURES | COMPOSITES | EFFICIENT | GREEN | CARBON NANOTUBES | ARRAYS | Photodegradation | Nanocrystals | Nanocomposites | Photocatalysis | Migration | Radiation | Etching | pH effects | Methylene blue
Journal Article
Journal of Power Sources, ISSN 0378-7753, 01/2014, Volume 245, pp. 801 - 807
Well defined nitrogen-doped graphene (NG) is prepared by a transfer doping approach, in which the graphene oxide (GO) is deoxidized and nitrogen doped by the...
Nitrogen-doped | Polyaniline | Graphene | Oxygen reduction reaction | ELECTROCHEMISTRY | CARBON | OXIDE | METAL-CATALYSTS | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | ELECTROCHEMICAL REDUCTION | COMPOSITE | ELECTROCATALYTIC ACTIVITY | CATHODIC CATALYST | ELECTROLYTE MEMBRANE | FUNCTIONALIZED GRAPHENE | Raman spectroscopy | Graphite
Nitrogen-doped | Polyaniline | Graphene | Oxygen reduction reaction | ELECTROCHEMISTRY | CARBON | OXIDE | METAL-CATALYSTS | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | ELECTROCHEMICAL REDUCTION | COMPOSITE | ELECTROCATALYTIC ACTIVITY | CATHODIC CATALYST | ELECTROLYTE MEMBRANE | FUNCTIONALIZED GRAPHENE | Raman spectroscopy | Graphite
Journal Article
Journal of Materials Science, ISSN 0022-2461, 03/2018, Volume 53, Issue 6, p. 4395
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 2017, Volume 695, pp. 489 - 495
Niobium oxyfluoride (Nb O F) nanomaterials have been the focus of photocatalysis due to their excellent optoelectronic properties. However, the practical...
Hybrid nanocomposites | Nb | Thermal decomposition | F | Photocatalysis | O
Hybrid nanocomposites | Nb | Thermal decomposition | F | Photocatalysis | O
Journal Article
Scientific Reports, 01/2017, Volume 7, p. 39973
Novel semiconductor photocatalysts have been the research focus and received much attention in recent years. The key issues for novel semiconductor...
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 02/2017, Volume 695, p. 489
Niobium oxyfluoride (Nb.sub.3O.sub.7F) nanomaterials have been the focus of photocatalysis due to their excellent optoelectronic properties. However, the...
Mineral industry | Mining industry | Catalysis
Mineral industry | Mining industry | Catalysis
Journal Article
Journal of Power Sources, ISSN 0378-7753, 08/2015, Volume 288, pp. 121 - 127
Membrane electrode assembly (MEA), which contains cathode and anode catalytic layer, gas diffusion layers (GDL) and electrolyte membrane, is the key unit of a...
Catalyst coating membrane | High-temperature proton exchange membrane fuel cell | Polybenzimidazole | Membrane electrode assembly | Cell performance | ELECTROCHEMISTRY | COATED MEMBRANE | DECAL TRANSFER METHOD | ENERGY & FUELS | PERFORMANCE | GAS-DIFFUSION ELECTRODE | MEAS | ANODE CATALYST | DURABILITY | OPTIMIZATION | FABRICATION | LAYER | Coatings | Fuel cell industry | Fuel cells | Methods | Electrolytes
Catalyst coating membrane | High-temperature proton exchange membrane fuel cell | Polybenzimidazole | Membrane electrode assembly | Cell performance | ELECTROCHEMISTRY | COATED MEMBRANE | DECAL TRANSFER METHOD | ENERGY & FUELS | PERFORMANCE | GAS-DIFFUSION ELECTRODE | MEAS | ANODE CATALYST | DURABILITY | OPTIMIZATION | FABRICATION | LAYER | Coatings | Fuel cell industry | Fuel cells | Methods | Electrolytes
Journal Article
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