Cai Shen
Affiliations: | Ningbo Institute of Materials Technology & Engineering, Chinese Academy of Sciences |
Area:
Scanning probe microscopy, carbon nanotube, lithium-ion batteriesGoogle:
"Cai Shen"Mean distance: 39813
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Publications
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Wang Q, Sun D, Zhou X, et al. (2020) An amide-based interface layer with high toughness in situ building on Li metal anode. Acs Applied Materials & Interfaces |
Cheng Y, Ma B, Tan C, et al. (2020) Hierarchical macro-microporous ZIF-8 nanostructures as efficient nano-lipase carriers for rapid and direct electrochemical detection of nitrogenous diphenyl ether pesticides Sensors and Actuators B-Chemical. 321: 128477 |
Zhang H, Wang D, Shen C. (2020) In-situ EC-AFM and ex-situ XPS characterization to investigate the mechanism of SEI formation in highly concentrated aqueous electrolyte for Li-ion batteries Applied Surface Science. 507: 145059 |
Zhao W, Song W, Cheong LZ, et al. (2019) Beyond imaging: Applications of atomic force microscopy for the study of Lithium-ion batteries. Ultramicroscopy. 204: 34-48 |
Yang X, Chen Z, Zhou D, et al. (2019) Ultra-low Au–Pt Co-decorated TiO2 nanotube arrays: Construction and its improved visible-light-induced photocatalytic properties Solar Energy Materials and Solar Cells. 201: 110065 |
Wang Z, Ma B, Shen C, et al. (2019) Electrochemical Biosensing of Chilled Seafood Freshness by Xanthine Oxidase Immobilized on Copper-Based Metal–Organic Framework Nanofiber Film Food Analytical Methods. 12: 1715-1724 |
Wang M, Huai L, Hu G, et al. (2018) Effect of LiFSI Concentrations To Form Thickness- and Modulus-Controlled SEI Layers on Lithium Metal Anodes Journal of Physical Chemistry C. 122: 9825-9834 |
Gao G, Cheong L, Wang D, et al. (2018) Pyrolytic carbon derived from spent coffee grounds as anode for sodium-ion batteries Carbon Resources Conversion. 1: 104-108 |
Huang S, Cheong L, Wang D, et al. (2018) Thermal stability of solid electrolyte interphase of lithium-ion batteries Applied Surface Science. 454: 61-67 |
Huang S, Cheong L, Wang S, et al. (2018) In-situ study of surface structure evolution of silicon anodes by electrochemical atomic force microscopy Applied Surface Science. 452: 67-74 |