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Nan Li
Researcher at Chinese Academy of Sciences
Publications - 155
Citations - 6712
Nan Li is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Medicine & Capacitive sensing. The author has an hindex of 30, co-authored 125 publications receiving 5070 citations. Previous affiliations of Nan Li include Jinan University & Nanyang Technological University.
Papers
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A metal–organic framework-derived bifunctional oxygen electrocatalyst
TL;DR: In this paper, a general approach for the synthesis of hollow frameworks of nitrogen-doped carbon nanotubes derived from metal-organic frameworks, which exhibit higher electrocatalytic activity and stability for oxygen reduction and evolution than commercial Pt/C catalysts, is presented.
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One‐Pot Synthesis of Pt–Co Alloy Nanowire Assemblies with Tunable Composition and Enhanced Electrocatalytic Properties
TL;DR: The electrochemical results demonstrate that the 3D Pt3Co NWA is indeed a promising electrocatalyst with enhanced catalytic activity and improved durability for practical electrocatalytic applications.
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Quantum dots derived from two-dimensional materials and their applications for catalysis and energy
TL;DR: The synthesis methods and the properties of quantum dots derived from the atomically-thin two-dimensional sheets are discussed and their applications in electrocatalysis, photocatalysis, supercapacitors, batteries, and photovoltaics are emphasized.
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Functionalized graphite nanoplatelets/epoxy resin nanocomposites with high thermal conductivity
TL;DR: In this paper, a two-step method of methanesulfonic acid/γ-glycidoxypropyltrimethoxysilane (MSA/KH-560) is introduced to functionalize the surface of GNPs (fGNPs).
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Systematic bandgap engineering of graphene quantum dots and applications for photocatalytic water splitting and Co2 reduction
Yibo Yan,Jie Chen,Nan Li,Jingqi Tian,Kaixin Li,Jizhou Jiang,Jiyang Liu,Qinghua Tian,Peng Chen +8 more
TL;DR: The functionalized GQDs with a narrow bandgap and intramolecular Z-scheme structure are employed as the efficient photocatalysts for water splitting and carbon dioxide reduction under visible light.