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    Direct Synthesis of Carbon Sheathed Tungsten Oxide Nanoparticles via Self-Assembly Route for High Performance...
    관리자
    2020-05-12      조회 2,467   댓글 0  
    이메일주소 site@site.co.kr
    Author Yuanyuan Zhou, Ilbok Lee, Daeun Kim, Seunghee Han, Jae-Kwang Kim, Donghyun Lee, Song Won Ko, Sung Gyu Pyo, Hyungbin Son, Songhun Yoon
    Journal Journal of nanoscience and nanotechnology
    Year of Pub. 2017


    Direct Synthesis of Carbon Sheathed Tungsten Oxide Nanoparticles via Self-Assembly Route for High Performance Electrochemical Charge Storage Electrode​



    Using a stabilizing agent-assisted co-assembly method, a novel nanocomposite of mesoporous carbon embedded with uniform tungsten oxide nanorods is obtained, which is converted into carbon-sheathed tungsten oxide nanoparticles by delicate calcination and further reduction. Through optimization of tungsten content, it is found that highly crystalline tungsten oxide nanoparticles are uniformly coated with an ultra-thin carbon layer. When applied into electrochemical charge-storage electrodes for supercapacitor and lithium-ion battery, an excellent average capacitance (129 F g−1, above 400 F cm−3), higher rate performance and significantly advanced cycle stability are observed. These improved charge storage properties are attributed to improved electrical conductivity and enhanced structural stability, which is induced by uniform carbon coating on partially reduced tungsten oxide nanoparticles.​

     

    첨부파일 69.png (253.18KB) [0] 2020-05-12 10:41:35
    첨부파일 Direct_Synthesis_of_Carbon_Sheathed_Tungsten_Oxide_Nanoparticles_via_Self-Assembly_Route_for_High_Performance_Electrochemical_Charge_Storage_Electrode.pdf (6.07MB) [0] 2020-05-12 10:41:35
    이전글 Tracking the confinement effect of highly dispersive carbon in a tungsten oxide/carbon nanocomposite: conversion anode materials in lithium ion batteries
    다음글 Nondisruptive in situ Raman analysis for gas evolution in commercial supercapacitor cells
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