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Wei-Li Song

Researcher at Beijing Institute of Technology

Publications -  223
Citations -  13338

Wei-Li Song is an academic researcher from Beijing Institute of Technology. The author has contributed to research in topics: Electrode & Graphene. The author has an hindex of 49, co-authored 184 publications receiving 10017 citations. Previous affiliations of Wei-Li Song include University of Science and Technology Beijing & Clemson University.

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Bioinspired Controllable Electro-Chemomechanical Coloration Films

TL;DR: In this paper, a conceptually novel bio-inspired coloration film is demonstrated using nanoscale amorphous silicon (a-Si) layer deposited on a reflective metal substrate, which enables to present consecutively tunable chromogenic property in a broad visible band, since the simultaneous changes in both chemical components and film thickness substantially vary the conditions of destructive interference.
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Tin nanoparticles embedded in porous N-doped graphene-like carbon network as high-performance anode material for lithium-ion batteries

TL;DR: In this article, well-dispersed Sn nanoparticles embedded in the porous N-doped graphene-like carbon network (Sn@PNGC) were simply fabricated via a one-step thermal reaction.
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Facile fabrication of safe and robust polyimide fibrous membrane based on triethylene glycol diacetate-2-propenoic acid butyl ester gel electrolytes for lithium-ion batteries

TL;DR: In this paper, robust electrospun polyimide (PI) membranes are fabricated by polymerization of oxidianiline (ODA) and pyromellitic dianhydride (PMDA), which exhibit highly uniform morphology with an average fiber diameter ∼ 600nm, high porosity ∼67, high electrolyte uptake ∼534% and good relative absorption ratio ∼75% of the initial absorption.
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Enhanced piezoelectric and mechanical properties of ZnO whiskers and Sb2O3 co-modified lead zirconate titanate composites

TL;DR: In this article, ZnO whiskers and Sb 2 O 3 co-modified lead zirconate titanate (denoted as PZT/ZnO w /Sb 2O 3 ) piezoelectric composites were fabricated using a solid state sintering technique.
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Modified separators for rechargeable high-capacity selenium-aluminium batteries

TL;DR: In this paper, a novel separator modified with CMK-3 porous carbon coating was developed, aiming to substantially promote the rechargeable capacity and cycling stability of the selenium aluminium batteries.