Search Results - "Yuan, Shouyi"
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1
Humidity effect on electrochemical performance of Li–O2 batteries
Published in Journal of power sources (15-10-2014)“…In this work, we compare the performance of Li–O2 batteries in pure/dry O2, pure O2 with a relative humidity (RH) of 15% and ambient air with an RH of 50%, and…”
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2
Synthesis of ruthenium oxide coated ordered mesoporous carbon nanofiber arrays as a catalyst for lithium oxygen battery
Published in Journal of power sources (15-02-2015)“…Li-O2 batteries with super-high theoretical energy density are attracting extensive attention. However, the sluggish oxygen reduction/evolution reaction, the…”
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3
A hierarchical structure of carbon-coated Li3VO4 nanoparticles embedded in expanded graphite for high performance lithium ion battery
Published in Journal of power sources (30-01-2016)“…A hierarchical structure of carbon-coated Li3VO4 nanoparticles homogeneously embedded in expanded graphite was successfully synthesized by a facile and…”
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4
Three-dimensionally ordered, ultrathin graphitic-carbon frameworks with cage-like mesoporosity for highly stable Li-S batteries
Published in Nano research (01-07-2017)“…Mesoporous carbons have been widely utilized as the sulfur host for lithium-sulfur (Li-S) batteries. The ability to engineer the porosity, wall thickness, and…”
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5
Manganese-Based Oxide Cathode Materials for Aqueous Zinc-Ion Batteries: Materials, Mechanism, Challenges, and Strategies
Published in Chem & Bio Engineering (28-03-2024)“…Aqueous zinc-ion batteries (AZIBs) have recently attracted worldwide attention due to the natural abundance of Zn, low cost, high safety, and environmental…”
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6
Advanced Electrolyte Design for High‐Energy‐Density Li‐Metal Batteries under Practical Conditions
Published in Angewandte Chemie International Edition (01-12-2021)“…Given the limitations inherent in current intercalation‐based Li‐ion batteries, much research attention has focused on potential successors to Li‐ion batteries…”
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Organic Electrode Materials for Energy Storage and Conversion: Mechanism, Characteristics, and Applications
Published in Accounts of chemical research (21-05-2024)“…Conspectus Lithium ion batteries (LIBs) with inorganic intercalation compounds as electrode active materials have become an indispensable part of human life…”
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Advanced Nonflammable Organic Electrolyte Promises Safer Li‐Metal Batteries: From Solvation Structure Perspectives
Published in Advanced materials (Weinheim) (01-03-2023)“…Batteries with a Li‐metal anode have recently attracted extensive attention from the battery communities owing to their high energy density. However, severe…”
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Graphene-Supported Nitrogen and Boron Rich Carbon Layer for Improved Performance of Lithium-Sulfur Batteries Due to Enhanced Chemisorption of Lithium Polysulfides
Published in Advanced energy materials (01-03-2016)“…A strategy is presented to chemically bind sulfur and its discharge products with a graphene‐supported N/B‐rich carbon layer with various N sites and a unique…”
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10
Dendrite‐Free and Long‐Cycling Sodium Metal Batteries Enabled by Sodium‐Ether Cointercalated Graphite Anode
Published in Advanced functional materials (01-04-2021)“…Stable and dendrite‐free Na metal plating–stripping is achieved on the graphite electrode. The sodium‐ether cointercalated graphite exhibits ultrahigh Na…”
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11
Revisiting the designing criteria of advanced solid electrolyte interphase on lithium metal anode under practical condition
Published in Nano energy (01-05-2021)“…Reducing the ratio of Negative/Positive ratio (N/P ratio) is critical to increase the energy density of Li metal batteries (LMBs). Typically, stable Li…”
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Corrigendum to “Humidity effect on electrochemical performance of Li–O2 batteries” [J. Power Sources 264 (2014) 1–7]
Published in Journal of power sources (31-12-2020)Get full text
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13
Dual Lithiophilic Structure for Uniform Li Deposition
Published in ACS applied materials & interfaces (20-03-2019)“…The development of Li metal anodes is hindered by the Li dendrites arising from the random deposition of Li metal during cycles. Hence, uniform deposition of…”
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14
Zinc‐Coordinated Imidazole‐Based Ionic Liquid as Liquid Salt for All‐Temperature Aqueous Zinc‐Ion Batteries
Published in Advanced functional materials (01-08-2024)“…Owing to the intrinsically high safety, low cost, natural abundance, and high energy density of Zn metal, aqueous Zn ion batteries (AZIBs) have become a…”
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15
Boosting Fast‐Charging Capability of High‐Voltage Li Metal Batteries with Ionic Liquid Modified Ethereal Electrolyte
Published in Advanced energy materials (01-12-2023)“…Given the high compatibility with Li metal anodes, ethereal electrolytes have found widespread use in Li metal batteries. Unfortunately, their applications in…”
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16
An additional discharge plateau of Mn3+ in LiFe0.5Mn0.5PO4 at high current rates
Published in Electrochemistry communications (01-06-2015)“…LiFe0.5Mn0.5PO4 typically exhibits two pairs of plateaus in charge/discharge curves associated with MnPO4/LiMnPO4 and FePO4/LiFePO4 phase transformation. In…”
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17
Leaf‐Like Graphene‐Oxide‐Wrapped Sulfur for High‐Performance Lithium–Sulfur Battery
Published in Advanced science (01-08-2015)“…Carbon/sulfur composites are attracting extensive attention because of their improved performances for Li–S batteries. However, the achievements are generally…”
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18
Recent progress of flexible rechargeable batteries
Published in Science bulletin (Beijing) (24-09-2024)“…This review discusses five distinct types of flexible batteries in detail about their configurations, recent research advancements, and practical applications,…”
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Correction to "Dual Lithiophilic Structure for Uniform Li Deposition"
Published in ACS applied materials & interfaces (13-01-2021)Get full text
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Dual Lithiophilic Structure for Uniform Li Deposition
Published in ACS applied materials & interfaces (25-02-2019)“…The development of Li metal anode is hindered by the Li dendrites arising from the random deposition of Li metal during cycles. Hence, uniform deposition of Li…”
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