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钱逸泰
博士生导师 硕士生导师
任职 : 中国科学院院士
性别:男
毕业院校:山东大学
在职信息:在职
所在单位:化学与化工学院
所属院系: 化学与化工学院
学科:无机化学
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[1] 姚倩. Superior sodiophilicity and molecule crowding of crown ether boost the electrochemical performance of all-climate sodium-ion batteries. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF T, 121, 2024.
[2] . A porous polycrystalline NiCo2Pxas a highly efficient host for sulfur cathodes in Li-S batteries. Journal of Materials Chemistry A, 9, 23149-23156, 2021.
[3] Wang, Bin. Zinc-assisted Cobalt-ditelluride Polyhedra Inducing Lattice Strain to Endow Efficient Adsorption-catalysis for High-energy Lithium-sulfur Batteries.. Advanced Materials, 34, e2204403, 2022.
[4] Wang, Dongdong. Solvation Modulation Enhances Anion-Derived Solid Electrolyte Interphase for Deep Cycling of Aqueous Zinc Metal Batteries. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 62, 2023.
[5] 汪冬冬. Rational Screening of Artificial Solid Electrolyte Interphases on Zn for Ultrahigh-Rate and Long-Life Aqueous Batteries. ADVANCED MATERIALS, 35, 2023.
[6] 黄曼. 在NaCl非水离子液体中制备类石墨烯状氮硫共掺杂生物质碳材料来提高锂硫电池的动力学研究(英文). SCIENCE CHINA-MATERIALS, 62, 455-464, 2019.
[7] 安永灵. Rational Design of Sulfur-Doped Three-Dimensional Ti3C2Tx MXene/ZnS Heterostructure as Multifunctional Protective Layer for Dendrite-Free Zinc-Ion Batteries. ACS nano, 15, 15259-15273, 2021.
[8] Li, Chuanchuan. Manipulating Electrocatalytic Polysulfide Redox Kinetics by 1D Core–Shell Like Composite for Lithium–Sulfur Batteries. advanced energy materials, 12, 2022.
[9] 李晓伟. Mesoporous NiO ultrathin nanowire networks topotactically transformed from α-Ni(OH)2 hierarchical microspheres and their superior electrochemical capacitance properties and excellent capability for water treatment. JOURNAL OF MATERIALS CHEMISTRY Journal, 22, 14276-14283, 2012.
[10] 李敬发. High electrochemical performance of monodisperse NiCo2O 4 mesoporous microspheres as an anode material for Li-ion batteries. ACS Applied Materials & Interfaces, 5, 981-988, 2013.
[11] 毋芳芳. Hydrothermal Synthesis of Unique Hollow Hexagonal Prismatic Pencils of Co3V2O8H2O: A New Anode Material for Lithium-Ion Batteries. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 54, 10787-10791, 2015.
[12] 褚衍婷. Enhancing the electrode performance of Co3O4 through Co3O4@a-TiO2 core-shell microcubes with controllable pore size. RSC advances, 5, 40899-40906, 2015.
[13] 柏静. Unusual Formation of ZnCo2O4 3D Hierarchical Twin Microspheres as a High-Rate and Ultralong-Life Lithium-Ion Battery Anode Material. Advanced Functional Materials, 24, 3012-3020, 2014.
[14] 李保松. Mesoporous quasi-single-crystalline NiCo2O4 superlattice nanoribbons with optimizable lithium storage properties. Journal of Materials Chemistry A, 3, 10336-10344, 2015.
[15] 李敬发. Uniform LiNi_(1/3)Co_(1/3)Mn_(1/3)O_2 hollow microspheres: Designed synthesis, topotactical structural transformation and their enhanced electrochemical performance. NANO ENERGY, 1249-1260, 2014.
[16] 黄曼. Quantum-Matter Bi/TiO2 Heterostructure Embedded in N-Doped Porous Carbon Nanosheets for Enhanced Sodium Storage. SMALL STRUCTURES, 2, 2021.
[17] 朱延松. Bimetallic Bi-Sn microspheres as high initial coulombic efficiency and long lifespan anodes for sodium-ion batteries. chemical communications, 58, 5140, 2022.
[18] 安永灵. One-Step, Vacuum-Assisted Construction of Micrometer-Sized Nanoporous Silicon Confined by Uniform Two-Dimensional N-Doped Carbon toward Advanced Li Ion and MXene-Based Li Metal Batteries. ACS nano, 16, 4560, 2022.
[19] 安永灵. Rational Design of Sulfur-Doped Three-Dimensional Ti3C2Tx MXene/ZnS Heterostructure as Multifunctional Protective Layer for Dendrite-Free Zinc-Ion Batteries. ACS nano, 15, 15259, 2021.
[20] 刘承凯. Robust and flexible polymer/MXene-derived two dimensional TiO2 hybrid gel electrolyte for dendrite-free solid-state zinc-ion batteries. Chemical Engineering Journal, 430, 2022.
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