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Enhanced properties of low-cost carbon black-graphite counter electrode in DSSC by incorporating binders

机译:通过掺入粘合剂来增强DSSC中低成本炭黑石墨对电极的性能

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摘要

Carbon-based counter electrodes of dye-sensitized solar cells (DSSCs) such as carbon black-graphite composite (CB/Gr) have received unprecedented interest in recent years due to their ease of fabrication, good corrosion resistance, and low cost compared to platinum (Pt) electrodes. However, the poor surface adherence between the carbon counter electrodes (CE) and FTO substrate, low surface area, and poor inter-particle connection between the carbon materials have consistently become a major challenge. In order to overcome these issues, we have fabricated CB/Gr by incorporating binders of titanium (IV) isopropoxide (TTIP), and zirconium (IV) dioxide (ZrO2) as the counter electrodes for the DSSC. The performance of the CE is characterized by four-point probe conductivity measurement, scanning electron microscopy (SEM) and energy dispersive X-ray (EDX), X-ray photoelectron spectroscopy (XPS), electrochemical impedance spectroscopy (EIS), and current density voltage (JV) characteristics. The results revealed that incorporating binders to the CB/Gr has improved the series resistance (RS) and charge transfer resistance (RCT), which enhances the short-circuit current density (JSC), fill factor (FF), and the power conversion efficiency (PCE) of the device. The TTIP binder in CB/Gr CE exhibited superior performance in DSSC is largely attributed to the formation of TiO2 in situ with small particle size of about 100 nm, leading to enhanced intimate contact between the carbon materials, high surface area, and better surface adherence between counter electrode and the FTO substrate. Our findings, thereby, offer the possibility to engineer and optimize the energy levels of CE in an effort to develop a high-performing DSSC counter electrode.
机译:诸如炭黑石墨复合材料(CB / GR)的染料敏化太阳能电池(DSSC)的碳基对应电极近年来由于其易于制造,良好的耐腐蚀性和低成本而获得前所未有的兴趣。与铂金相比(PT)电极。然而,碳计数器电极(CE)和FTO基板之间的差的表面粘附性差,碳材料之间的低表面积和颗粒间差的颗粒连接始终是主要挑战。为了克服这些问题,我们通过将钛(IV)异丙氧化物(TTIP)和二氧化锆(ZrO2)的粘合剂作为DSSC的反电极掺入CB / GR。 CE的性能特征在于四点探针电导率测量,扫描电子显微镜(SEM)和能量分散X射线(EDX),X射线光电子谱(XPS),电化学阻抗光谱(EIS)和电流密度电压(JV)特性。结果表明,将粘合剂掺入CB / GR的结果改善了串联电阻(RS)和电荷转移电阻(RCT),其增强了短路电流密度(JSC),填充因子(FF)和电力转换效率(PCE)的设备。 CB / GR CE中的TTIP粘合剂在DSSC中表现出优异的性能,主要归因于原位的TiO2,粒径为约100nm,导致碳材料,高表面积和更好的表面粘附之间的私密接触增强在对电极和FTO基板之间。因此,我们的研究结果提供了工程师和优化CE的能量水平的可能性,以开发高性能的DSSC对电极。

著录项

  • 来源
    《Solar Energy》 |2021年第9期|237-244|共8页
  • 作者单位

    Univ Brunei Darussalam Fac Sci Jalan Tungku Link BE-1410 Gadong Brunei;

    Univ Brunei Darussalam Fac Sci Jalan Tungku Link BE-1410 Gadong Brunei|Univ Brunei Darussalam Optoelect Devices Res Grp Jalan Tungku Link BE-1410 Gadong Brunei;

    Univ Brunei Darussalam Fac Sci Jalan Tungku Link BE-1410 Gadong Brunei|Univ Brunei Darussalam Optoelect Devices Res Grp Jalan Tungku Link BE-1410 Gadong Brunei;

    Synchrotron Light Res Inst 111 Univ Ave Muang Dist 30000 Nakhon Ratchasi Thailand;

    Univ Brunei Darussalam Ctr Adv Mat & Energy Sci Jalan Tungku Link BE-1410 Gadong Brunei;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Dye-sensitized solar cells; Counter electrodes; Binders; Catalytic activity; Carbon-based materials;

    机译:染料敏化太阳能电池;反电极;粘合剂;催化活性;碳基材料;

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