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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A flexible semitransparent photovoltaic supercapacitor based on water-processed MXene electrodes
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A flexible semitransparent photovoltaic supercapacitor based on water-processed MXene electrodes

机译:基于水处理蒙皮电极的柔性半透明光伏超级电容器

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Solar energy, although it has the highest power density available in terms of renewable energy, has the drawback of being erratic. Integrating an energy harvesting and storage device into photovoltaic energy storage modules is a viable route for obtaining self-powered energy systems. Herein, an MXene-based all-solution processed semitransparent flexible photovoltaic supercapacitor (PSC) was fabricated by integrating a flexible organic photovoltaic (OPV) with Ti3C2Tx MXene as the electrode and transparent MXene supercapacitors with an organic ionogel as the electrolyte in the vertical direction, using Ti3C2Tx thin film as a common electrode. In the quest for a semitransparent flexible PSC, Ti3C2Tx MXene was first used as a transparent electrode for OPV with a high power conversion efficiency of 13.6%. The ionogel electrolyte-based transparent MXene supercapacitor shows a high volumetric capacitance of 502 F cm(-3) and excellent stability. Finally, a flexible PSC with a high average transmittance of over 33.5% was successfully constructed by all-solution processing and a remarkable storage efficiency of 88% was achieved. This strategy enables a simple route for fabricating MXene based high-performance all-solution-processed flexible PSCs, which is important for realizing flexible and printable electronics for future technologies.
机译:太阳能,虽然它具有可再生能源的最高功率密度,但具有不稳定的缺点。将能量收集和存储装置集成到光伏能量存储模块中是获得自动能源系统的可行途径。在此,通过将柔性有机光伏(OPV)与Ti3C2TX MXENE与垂直方向的电解质相加,通过将柔性有机光伏(OPV)与Ti3C2TX MXENE集成为电极和透明MxENE超级电容器,以与垂直方向为电解质的电解质,通过将柔性有机光伏(OPV)与Ti3C2Tx MX,作为电极和透明MxEne超级电容器作为电极和透明的MXENE超级电容器来制造半透​​明的半透明柔性光伏超级电容器(PSC)。使用Ti3C2Tx薄膜作为公共电极。在寻求半透明柔性PSC中,首先用作OPV的透明电极,高功率转换效率为13.6%。基于离子电解质的透明MXENE超级电容器显示出502 f cm(-3)的高容量电容和优异的稳定性。最后,通过全溶液处理成功构建了具有超过33.5%的高平均透射率的柔性PSC,实现了88%的显着储存效率。该策略使简单的路线能够制造基于MXENE的高性能全面处理的灵活PSC,这对于实现未来技术的灵活和可印刷的电子产品很重要。

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