纤维素
摩擦电效应
材料科学
聚二甲基硅氧烷
化学工程
开路电压
甲醇
再生纤维素
接触角
高分子化学
复合材料
有机化学
化学
电压
电气工程
工程类
作者
Christina Dahlström,Alireza Eivazi,Malin Nejström,Renyun Zhang,Torbjörn Pettersson,Haider Iftikhar,Orlando J. Rojas,Bruno Medronho,Magnus Norgren
出处
期刊:Cellulose
[Springer Nature]
日期:2024-02-02
卷期号:31 (4): 2047-2061
被引量:5
标识
DOI:10.1007/s10570-024-05745-8
摘要
Abstract Cellulose has shown great potential in the development of green triboelectric nanogenerators. Particularly, regenerated cellulose (R-cellulose) has shown remarkably high output power density but the structural features and key parameters that explain such superior performance remain unexplored. In this work, wood cellulose fibers were dissolved in a LiOH(aq)-based solvent to produce a series of R-cellulose films. Regeneration in different alcohols (from methanol to n-pentanol) was performed and the films’ structural features and triboelectric performance were assessed. Nonsolvents of increased hydrophobicity led to R-cellulose films with a more pronounced (1–10) diffraction peak. An open-circuit voltage (V OC ) of up to ca. 260 V and a short-circuit current (I SC ) of up to ca. 150 µA were measured for R-cellulose against polytetrafluoroethylene (as negative counter-layer). However, R-cellulose showed an increased V OC of 175% (from 88.1 V) against polydimethylsiloxane when increasing the alcohol hydrocarbon chain length from methanol to n-pentanol. The corresponding I SC and output power also increased by 76% (from 89.9 µA) and by 382% (from 8.8 W m –2 ), respectively. The higher R-cellulose hydrophilicity, combined with soft counter-tribolayer that follow the surface structures increasing the effective contact area, are the leading reasons for a superior triboelectric performance. Graphic abstract
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