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From grass to battery anode: agricultural biomass hemp-derived carbon for lithium storage.
Um, Ji Hyun; Ahn, Chi-Yeong; Kim, Jinsoo; Jeong, Mihee; Sung, Yung-Eun; Cho, Yong-Hun; Kim, Seung-Soo; Yoon, Won-Sub.
Afiliação
  • Um JH; Department of Energy Science, Sungkyunkwan University Suwon 16419 South Korea wsyoon@skku.edu.
  • Ahn CY; School of Chemical and Biological Engineering, Seoul National University Seoul 08826 South Korea.
  • Kim J; Center for Nanoparticle Research, Institute for Basic Science (IBS) Seoul 08826 South Korea.
  • Jeong M; Department of Chemical Engineering, Kyung Hee University Yongin 17104 South Korea.
  • Sung YE; Department of Energy Science, Sungkyunkwan University Suwon 16419 South Korea wsyoon@skku.edu.
  • Cho YH; School of Chemical and Biological Engineering, Seoul National University Seoul 08826 South Korea.
  • Kim SS; Center for Nanoparticle Research, Institute for Basic Science (IBS) Seoul 08826 South Korea.
  • Yoon WS; Division of Energy Engineering, Kangwon National University Samcheok 25913 South Korea yhun00@kangwon.ac.kr.
RSC Adv ; 8(56): 32231-32240, 2018 Sep 12.
Article em En | MEDLINE | ID: mdl-35547481
ABSTRACT
Biomass-derived carbon, as a low-cost material source, is an attractive choice to prepare carbon materials, thus providing an alternative to by-product and waste management. Herein, we report the preparation of carbon from hemp stem as a biomass precursor through a simple, low-cost, and environment-friendly method with using steam as the activating agent. The hemp-derived carbon with a hierarchically porous structure and a partial graphitization in amorphous domains was developed, and for the first time, it was applied as an anode material for lithium-ion battery. Natural hemp itself delivers a reversible capacity of 190 mA h g-1 at a rate of 300 mA g-1 after 100 cycles. Ball-milling of hemp-derived carbon is further designed to control the physical properties, and consequently, the capacity of milled hemp increases to 300 mA h g-1 along with excellent rate capability of 210 mA h g-1 even at 1.5 A g-1. The milled hemp with increased graphitization and well-developed meso-porosity is advantageous for lithium diffusion, thus enhancing electrochemical performance via both diffusion-controlled intercalation/deintercalation and surface-limited adsorption/desorption. This study not only demonstrates the application of hemp-derived carbon in energy storage devices, but also guides a desirable structural design for lithium storage and transport.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article