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Electrochimica Acta, ISSN 0013-4686, 04/2019, Volume 301, pp. 69 - 79
Lithium−oxygen (Li−O2) battery possesses remarkably high-energy density and is thus considered as an attractive system for next-generation energy storage.... 
Long life | CoNi2S4 | Free-standing | Flexible cathode | Li−O2 battery | COBALT SULFIDE | ELECTROCHEMISTRY | Li-O-2 battery | NI FOAM | PERFORMANCE | BIFUNCTIONAL ELECTROCATALYST | ELECTRODES | LI-O-2 BATTERIES | CHALLENGES | REDUCTION | AIR BATTERIES | CATALYSTS | Oxygen | Electronic devices | Electron transfer | Lithium | Batteries | Carbon | Textiles | Chemical reduction | Flux density | Catalysis | Chemical evolution | Nanorods | Cathodes | Energy storage
Journal Article
Electrochimica Acta, ISSN 0013-4686, 10/2019, Volume 321, p. 134716
Interface engineering is crucial strategy for the sensible design and synthesis of high-efficiency electrocatalysts. However, the study on the effect of... 
Electrocatalyst | Oxygen electrode | Free-standing structure | Li−O2 battery | ELECTROCHEMISTRY | Li-O-2 battery | MEMBRANE | KINETICS | NANOSHEETS | AIR | CATHODE CATALYST | ELECTRONIC-STRUCTURE | Nickel oxides | Oxygen | Electrocatalysts | Lithium batteries | Cobalt oxides | Surface structure | Reaction kinetics | Metal air batteries | Attenuation | Kinetics | Charge transfer | Electric fields | Heterostructures
Journal Article
Electrochimica Acta, ISSN 0013-4686, 04/2019, Volume 301, pp. 69 - 79
Lithium−oxygen (Li−O ) battery possesses remarkably high-energy density and is thus considered as an attractive system for next-generation energy storage.... 
Li−O | Flexible cathode | Free-standing | CoNi | Long life | battery
Journal Article
by Hu, AJ and Shu, CZ and Xu, CX and Liang, RX and Li, JB and Zheng, RX and Li, ML and Long, JP
JOURNAL OF MATERIALS CHEMISTRY A, ISSN 2050-7488, 10/2019, Volume 7, Issue 38, pp. 21605 - 21633
Journal Article
Electrochimica Acta, ISSN 0013-4686, 04/2019, Volume 301, p. 69
Lithium-oxygen (Li-O.sub.2) battery possesses remarkably high-energy density and is thus considered as an attractive system for next-generation energy storage.... 
Batteries | Textile industry
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 08/2019, Volume 798, p. 560
In this work, a novel 2D CuCo.sub.2S.sub.4 (CCS) nanosheets with spinel type structure is fabricated and used as the cathode catalyst for rechargeable... 
Sulfides | Superconductors | Analysis | Spinel group | Batteries | Catalysis
Journal Article
ACS Applied Materials & Interfaces, ISSN 1944-8244, 10/2018, Volume 10, Issue 40, pp. 34077 - 34086
The structure and catalytic activity of the oxygen electrode determine the overall electrochemical performance of lithium–oxygen (Li–O2) batteries. Here, a... 
Research | MoS | Li-O | battery | CNTs | cathode catalysts | interconnected network | Li-O-2 battery | MoS2 | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | NANOSCIENCE & NANOTECHNOLOGY | COMPOSITE | LI2O2 GROWTH | EVOLUTION | LONG-LIFE | REDUCTION | AIR BATTERIES | ELECTRODE | NANOCOMPOSITE | HYBRID
Journal Article
Journal Article
ChemElectroChem, ISSN 2196-0216, 01/2019, Volume 6, Issue 2, pp. 349 - 358
Designing and constructing an effective and efficient oxygen electrode plays a pivotal role in the successful development of lithium‐oxygen (Li−O2) batteries.... 
free-standing electrodes | lithium-oxygen batteries | NiCo2S4 | long cyclability | stability | NiCo | ELECTROCHEMISTRY | PERFORMANCE | BIFUNCTIONAL ELECTROCATALYST | LI-O-2 BATTERIES | CATHODE | LI2O2 GROWTH | EVOLUTION | REDUCTION | FOAM | KINETICS | Electrodes | Oxygen | Reaction kinetics | Lithium | Batteries | Carbon | Nanorods
Journal Article
ACS applied materials & interfaces, 09/2018
The structure and catalytic activity of the oxygen electrode determine the overall electrochemical performance of lithium-oxygen (Li-O ) batteries. Here, a... 
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 02/2020, Volume 382, p. 122854
The phase structure conversion of 2H- to 1T- MoS2 was achieved by Pd interfacial engineering and the Pd-TMS/CT electrode was investigated in Li–O2 system for... 
Palladium doping | Li–O2 batteries | Electrode | 1T-MoS2 | Interfacial engineering | STABILITY | LI2O2 | LI-O-2 BATTERY | HIGHLY EFFICIENT | ENGINEERING, CHEMICAL | NANOPARTICLES | MOS2 NANOSHEETS | TRANSPORT | EVOLUTION | ENGINEERING, ENVIRONMENTAL | Li-O-2 batteries | INTEGRATED CATHODE
Journal Article
ACS applied materials & interfaces, 12/2019, Volume 11, Issue 50, p. 46696
Catalysts with high performance are urgently needed in order to accelerate the reaction kinetics of the oxygen reduction reaction (ORR) and oxygen evolution... 
Journal Article
Chemical Engineering Journal, ISSN 1385-8947, 08/2020, Volume 393, p. 124592
The cactus-like CoSe2@NiSe2 heterogeneous material prepared via interface engineering is favorable for promoting the charge transfer kinetics. It is worth... 
Electrocatalyst | Oxygen electrode | Lattice distortion | Li−O2 battery
Journal Article
Electrochimica Acta, ISSN 0013-4686, 03/2020, Volume 337, p. 135795
Compared with the lithium-ion batteries (LIBs), lithium-oxygen batteries (LOBs) demonstrate ultra-high theoretical energy density (≈3505 W h kg−1), which... 
Oxygen electrodes | Li-O2 batteries | Phosphorus vacancies | Ni2P | Electrocatalysts
Journal Article
ACS Sustainable Chemistry & Engineering, ISSN 2168-0485, 03/2020
Journal Article