陈俊松

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教授
博士生导师
- 性别:男
- 毕业院校:新加坡南洋理工大学
- 学历:博士研究生毕业
- 学位:哲学博士学位
- 在职信息:在职人员
- 所在单位:材料与能源学院
- 学科:材料物理与化学
材料工程
- 联系方式:b66f9a00531a32a345ad7aee79ff2ecd0ab8a713774cfeff253bcea50a0a526208b56e6e2678ea94f63b837b042fb13cb7e51cdba4af48156c8db238ed89a70fa6f46e7cdee7ecf83c9d14f3e1e64b2181540a02edcd76cb13c8104885bb65b23d8297cb6b1b4720579ba3a23a85df89f3595a5a98b2b02fec868e27fd14643c
- 电子邮箱:b66f9a00531a32a345ad7aee79ff2ecd0ab8a713774cfeff253bcea50a0a526208b56e6e2678ea94f63b837b042fb13cb7e51cdba4af48156c8db238ed89a70fa6f46e7cdee7ecf83c9d14f3e1e64b2181540a02edcd76cb13c8104885bb65b23d8297cb6b1b4720579ba3a23a85df89f3595a5a98b2b02fec868e27fd14643c
访问量:
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[1]
Interface Engineering of Fe3Se4/FeSe Heterostructure Encapsulated in Electrospun Carbon Nanofibers for Fast and Robust Sodium Storage, Chem. Eng. J., vol. 417, pp. 129279, Apr 2021.
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[2]
Practical Strategies for Enhanced Performance of Anode Materials in Na+/K+-ion Batteries, J. Mater. Chem. A, vol. 9, pp. 7317-7335, Mar 2021.
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[3]
Self-Supported Sheets-on-wire CuO@Ni(OH)2/Zn(OH)2 Nanoarrays for High-performance Flexible Quasi-solid-state Supercapacitor, Processes, Apr 2021.
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[4]
Realizing Efficient Overall Water Splitting by Facilely Tuning Co Content in Self-supported Nix-Coy-P Microarray, ChemElectroChem, vol. 8, pp. 1307–1315, Mar 2021.
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[5]
Highly Efficient Na+ Storage in Uniform Thorn Ball-like -MnSe/C Nanospheres, Acta Metall. Sin. (Engl. Lett.), vol. 34, pp. 373–382, Feb 2021.
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[6]
Se-C Bonding Promoting Fast and Durable Na+ Storage in Yolk-shell SnSe2@Se-C, Small, vol. accepted,
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[7]
MOF-reinforced Co9S8 Self-supported Nanowire Arrays for Highly Durable and Flexible Supercapacitor, Electrochimica Acta, vol. 346, pp. 136201, Apr 2020.
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[8]
Naturally-derived Honeycomb-like N, S-codoped Hierarchical Porous Carbon with MS2 (M=Co, Ni) Decoration for High-performance Li-S Battery, Nanoscale, vol. 12, pp. 5114 – 5124, Apr 2020.
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[9]
Local confinement and alloy/dealloy activation of Sn-Cu nanoarrays for high-performance lithium-ion battery, Electrochim. Acta, vol. 336, pp. 135690 – 135699, Jan 2020.
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[10]
PVP-assisted Synthesis of Self-supported Ni2P@carbon for High-Performance Supercapacitor, Research, pp. 8013285, Oct 2019.
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[11]
Jun Song Chen,
Self-supported core/shell Co3O4@Ni3S2 nanowires for high-performance supercapacitors, Electrochimica Acta, vol. 311, pp. 221–229, Jun 2019.
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[12]
One-pot Synthesis of Self-Supported Hierarchical Urchin-like Ni3S2 with Ultrahigh Areal Pseudocapacitance, J. Mater. Chem. A, vol. 6, pp. 22115 - 22122, Jun 2018.
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[13]
Sodium Salt Promoted Growth of Self-supported Copper Oxides with Comparative Supercapacitive Properties, ChemElectroChem, vol. 4, pp. 3188–3195, Jun 2017.
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[14]
Composition-Dependent Pseudocapacitive Properties of Self-Supported Nickel-Based Nanobelts, J. Phys. Chem. C, vol. 121, pp. 7101 – 7107,
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[15]
Rational Design of Self-Supported Ni3S2 Nanosheets Array for Advanced Asymmetric Supercapacitor with a Superior Energy Density, ACS Appl. Mater. Interfaces, vol. 9, pp. 496 – 504, Jun 2017.
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[16]
Self-supported Phase-pure Ni3S2 Sheet-on-Rod Nanoarrays with Enhanced Pseudocapacitive Properties and High Energy Density, J. Power Sources, vol. 325, pp. 575 – 583, Jun 2016.
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[17]
Steel Mesh-supported NiS Nanosheet Array as Highly Efficient Catalyst for Oxygen Evolution Reaction, ACS Appl. Mater. Interfaces, vol. 8, pp. 5509 – 5516,
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[18]
A versatile ionic liquid-assisted approach to synthesize hierarchical structures of β-Ni(OH)2 nanosheets for high performance pseudocapacitor, Electrochimica Acta, vol. 188, pp. 863 – 870,
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[19]
Distinct Optical and Magnetic Properties of Ionic Liquid Tuned Hematite Nanocrystals Having Different Exposed (001) Facets, RSC Adv., vol. 4, pp. 593 – 597, Jun 2014.
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[20]
SnO2-based Nanomaterials: Synthesis and Application in Lithium-ion Batteries, Small, vol. 9, pp. 1877 – 1893, Jun 2013.