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Bio-inspired gelatin/single-walled carbon nanotube nanocomposite for transient electrochemical energy storage: An approach towards eco-friendly and sustainable energy system

机译:生物启发的明胶/单壁碳纳米管纳米纳米复合材料用于瞬态电化学能量存储:一种环保和可持续能源系统的方法

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摘要

Wide-scale production of non-biodegradable e-waste from electrical appliances are causing great harm to the environment. The use of bio-polymer based nanomaterials may offer a promising approach for the fabrication of eco-friendly sustainable devices. In this work, gelatin/single walled carbon nanotube (Gel/SWCNT) nanocomposites were prepared by a simple and economic aqueous casting method. The effect of SWCNT on the structural, surface-morphological, electrical, and electrochemical properties of the nanocomposite was studied. Fourier transform infrared spectroscopy (FTIR) and field emission scanning electron microscope (FESEM) showed an improved degree of interaction between the SWCNTs and Gel matrix. The surface wettability of the nanocomposites was found to be changed from hydrophilic to hydrophobic in nature due to the incorporation of SWCNTs into the Gel matrix. The incorporation of SWCNTs was also found to reduce the DC resistivity of the nanocomposite by 4 orders of magnitude. SWCNTs also increase the specific capacitance of the nanocomposite from 124 mF/g to 467 mF/g at a current density of 0.3 mA/g. The electrochemical impedance spectroscopy analysis revealed an increase of the pseudo-capacitance increased from 9.4 μF to 31 μF due to the incorporation of SWCNT. The Gel/SWCNT nanocomposite showed cyclic stability with capacitive retention of about 98% of its initial capacitance after completing 2000 charging/discharging cycles at a current density of 100 mA/g. The nanocomposite completely dissolves in water within 12 h, demonstrates it as a promising candidate for transient energy storage applications. The Gel/SWCNT nanocomposite may offer a new route for the synthesis of eco-friendly, biodegradable, and transient devices.
机译:来自电器的非可生物降解的电子废物的广泛生产导致环境造成巨大危害。使用生物聚合物的纳米材料可以提供有希望的制造生态友好的可持续设备的方法。在这项工作中,通过简单和经济的水性浇铸方法制备明胶/单壁碳纳米管(凝胶/ SWCNT)纳米复合材料。 SWCNT对纳米复合材料的结构,表面形态,电和电化学性质的影响。傅里叶变换红外光谱(FTIR)和场发射扫描电子显微镜(FESEM)在SWCNT和凝胶基质之间显示出改善的相互作用程度。发现纳米复合材料的表面润湿性由于将SWCTS掺入凝胶基质中,从亲水性转变为疏水性。还发现SWCNT的掺入将纳米复合二复合的直流电阻率降低4次数量级。 SWCNTS在电流密度为0.3 mA / g的电流密度,也将纳米复合材料的比电容从124mF / g增加到467mF / g。电化学阻抗光谱分析显示由于掺入SWCNT,伪电容的增加从9.4μF增加到31μF。凝胶/ SWCNT纳米复合物在完成2000个充电/放电循环之后,凝胶/ SWCNT纳米复合材料显示电容保留约98%的初始电容,其电流密度为100mA / g。纳米复合材料在12小时内完全溶解在水中,证明其作为瞬态能量存储应用的有希望的候选者。凝胶/ SWCNT纳米复合材料可提供用于合成环保,可生物降解和瞬态设备的新途径。

著录项

  • 期刊名称 Heliyon
  • 作者单位
  • 年(卷),期 2021(7),7
  • 年度 2021
  • 页码 e07468
  • 总页数 9
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:明胶;碳纳米管;可生物降解;瞬态;电化学性质;
  • 入库时间 2022-08-21 12:32:42

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