Search Results - "Zhong, Yiren"
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Surface Chemistry in Cobalt Phosphide-Stabilized Lithium–Sulfur Batteries
Published in Journal of the American Chemical Society (31-01-2018)“…Chemistry at the cathode/electrolyte interface plays an important role for lithium–sulfur batteries in which stable cycling of the sulfur cathode requires…”
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2
High‐Performance Sodium Metal Anodes Enabled by a Bifunctional Potassium Salt
Published in Angewandte Chemie International Edition (16-07-2018)“…Developing Na metal anodes that can be deeply cycled with high efficiency for a long time is a prerequisite for rechargeable Na metal batteries to be…”
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3
Elucidating Surface Restructuring-Induced Catalytic Reactivity of Cobalt Phosphide Nanoparticles under Electrochemical Conditions
Published in Journal of physical chemistry. C (08-02-2018)“…Probing and understanding surface restructuring-induced electrocatalytic reactivity is an essential but challenging step toward rational prediction of…”
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4
Fabrication of High-Power Li-Ion Hybrid Supercapacitors by Enhancing the Exterior Surface Charge Storage
Published in Advanced energy materials (01-09-2015)“…High‐power Li‐ion hybrid supercapacitors are fabricated with a sophisticated design in which both electrodes are based on ultrafine 3D structures. With a…”
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5
Solvent Molecule Cooperation Enhancing Lithium Metal Battery Performance at Both Electrodes
Published in Angewandte Chemie International Edition (11-05-2020)“…Developing electrolytes compatible with efficient and reversible cycling of electrodes is critical to the success of rechargeable Li metal batteries (LMBs)…”
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6
Inorganic/polymer hybrid layer stabilizing anode/electrolyte interfaces in solid-state Li metal batteries
Published in Nano research (01-12-2020)“…Li 1.5 Al 0.5 Ge 1.5 (PO 4 ) 3 (LAGP) is a solid-state electrolyte with high ionic conductivity and air stability but poor chemical stability and high…”
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7
Cycling and Failing of Lithium Metal Anodes in Carbonate Electrolyte
Published in Journal of physical chemistry. C (20-09-2018)“…Lithium metal electrodes promise high energy density, but their poor cycling stability has been limiting applications in real batteries. In this study, we…”
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8
Strong Metal–Phosphide Interactions in Core–Shell Geometry for Enhanced Electrocatalysis
Published in Nano letters (08-03-2017)“…Rational design of multicomponent material structures with strong interfacial interactions enabling enhanced electrocatalysis represents an attractive but…”
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9
Electroreduction of CO2 Catalyzed by a Heterogenized Zn–Porphyrin Complex with a Redox-Innocent Metal Center
Published in ACS central science (23-08-2017)“…Transition-metal-based molecular complexes are a class of catalyst materials for electrochemical CO2 reduction to CO that can be rationally designed to deliver…”
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10
Covalent organic frameworks: From materials design to electrochemical energy storage applications
Published in Nano select (01-02-2022)“…Covalent organic frameworks (COFs), with large surface area, tunable porosity, and lightweight, have gained increasing attention in the electrochemical energy…”
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11
Unlocking Bifunctional Electrocatalytic Activity for CO2 Reduction Reaction by Win-Win Metal–Oxide Cooperation
Published in ACS energy letters (09-11-2018)“…Understanding how remarkable properties of materials emerge from complex interactions of their constituents and designing advanced material structures to…”
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12
Competitive Roles of Conductivity and Lithiophility in Composite Lithium Metal Anode
Published in Energy material advances (01-01-2024)“…For the three-dimensional conductive host, the uneven lithium deposition and the dependence on the pore structure and lithiophility are a great challenge for…”
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13
High-capacity rechargeable batteries based on deeply cyclable lithium metal anodes
Published in Proceedings of the National Academy of Sciences - PNAS (29-05-2018)“…Discovering new chemistry and materials to enable rechargeable batteries with higher capacity and energy density is of paramount importance. While Li metal is…”
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14
Electrocatalysis in Lithium Sulfur Batteries under Lean Electrolyte Conditions
Published in Angewandte Chemie International Edition (19-11-2018)“…The presence of electrocatalysis in lithium–sulfur batteries has been proposed but not yet sufficiently verified. In this study, molybdenum phosphide (MoP)…”
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15
Identification and Catalysis of the Potential-Limiting Step in Lithium-Sulfur Batteries
Published in Journal of the American Chemical Society (05-04-2023)“…The Li-S chemistry is thermodynamically promising for high-density energy storage but kinetically challenging. Over the past few years, many catalyst materials…”
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16
Interface Modulation of Metal Sulfide Anodes for Long‐Cycle‐Life Sodium‐Ion Batteries
Published in Advanced materials (Weinheim) (01-03-2023)“…Although studies of transition metal sulfides (TMS) as anode materials for sodium‐ion batteries are extensively reported, the short cycle life is still a…”
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17
Functional metal-organic framework boosting lithium metal anode performance via chemical interactions
Published in Chemical science (Cambridge) (01-06-2017)“…Dendrite growth and low coulombic efficiency are two major factors that limit the utilization of Li metal electrodes in future generations of…”
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18
A Highly Efficient All‐Solid‐State Lithium/Electrolyte Interface Induced by an Energetic Reaction
Published in Angewandte Chemie (International ed.) (10-08-2020)“…The energetic chemical reaction between Zn(NO3)2 and Li is used to create a solid‐state interface between Li metal and Li6.4La3Zr1.4Ta0.6O12 (LLZTO)…”
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19
Orderly Packed Anodes for High-Power Lithium-Ion Batteries with Super-Long Cycle Life: Rational Design of MnCO3/Large-Area Graphene Composites
Published in Advanced materials (Weinheim) (04-02-2015)“…MnCO3 particles uniformly distributed on large‐area graphene form 2D composites whose large‐area character enables them to self‐assemble face‐to‐face into…”
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20
Rambutan-Like FeCO3 Hollow Microspheres: Facile Preparation and Superior Lithium Storage Performances
Published in ACS applied materials & interfaces (13-11-2013)“…Rambutan-like FeCO3 hollow microspheres were prepared via a facile and economic one-step hydrothermal method. The structure and morphology evolution mechanism…”
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