首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Controlled Electrochemical Synthesis of Nickel Hydroxide Nanosheets Grown on Non-woven Cu/PET Fibers: A Robust, Flexible, and Binder-Free Electrode for High-Performance Pseudocapacitors
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Controlled Electrochemical Synthesis of Nickel Hydroxide Nanosheets Grown on Non-woven Cu/PET Fibers: A Robust, Flexible, and Binder-Free Electrode for High-Performance Pseudocapacitors

机译:在无纺铜/ PET纤维上生长的氢氧化镍纳米片的受控电化学合成:高性能伪电容器的稳健,灵活且无粘合剂的电极

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摘要

Using a simple electrochemical. deposition (ECD) method, beta-nickel hydroxide (beta-Ni(OH)(2)) nanosheets (NSs) are facilely integrated on non-woven, conductive textile substrate (NWCTs). The NWCTs with copper-plated polyethylenterephthalate (Cu/PET) fibers serves as a highly conductive and low-cost working substrate for the ECD method. With an aid of direct current voltage in the growth solution, the beta-Ni(OH)(2) NSs well adhere to NWCTs fibers with good uniformity. The surface morphology and crystallinity properties of the synthesized beta-Ni(OH)(2) NSs on NWCTs are characterized by various physicochemical techniques. Furthermore, the hierarchical beta-Ni(OH)(2) NSs on NWCTs reveal superior energy storage performance in 1 M KOH electrolyte solution as a binder free electrode for pseudocapacitors. Compared to the conventional conductive foil-based electrode, the pseudocapacitive electrode in this work exhibit a relatively high electrochemical performance (specific capacitance of 2185.6 F g(-1)at 5 A g(-1)) and stable capacitance retention (95%) after long-term cycling process, which is attributed to the hierarchical nanonetwork of beta-Ni(OH)(2) NSs and three-dimensional fibrous configuration of NWCTs electrode. This cost-effective growth of Metal hydroxide/oxide nanostructures on flexible textiles may be useful for advanced energy storage device applications.
机译:使用简单的电化学方法。沉积(ECD)方法,将β-氢氧化镍(β-Ni(OH)(2))纳米片(NSs)轻松集成在无纺布,导电纺织品基材(NWCT)上。具有电镀铜对苯二甲酸乙二酯(Cu / PET)纤维的NWCT可作为ECD方法的高导电性和低成本工作基材。借助直流电压在生长溶液中,β-Ni(OH)(2)NSs可以很好地均匀地粘附到NWCTs纤维上。 NWCTs上合成的β-Ni(OH)(2)NS的表面形态和结晶度特性通过各种物理化学技术进行了表征。此外,NWCT上的分层β-Ni(OH)(2)NSs在1 M KOH电解质溶液中作为拟电容器的无粘合剂电极表现出优异的储能性能。与常规的基于导电箔的电极相比,这项工作中的伪电容电极表现出较高的电化学性能(在5 A g(-1)下的比电容为2185.6 F g(-1))和稳定的电容保持率(95%)经过长期的循环过程,这归因于β-Ni(OH)(2)NSs的分层纳米网络和NWCTs电极的三维纤维结构。这种在柔性纺织品上具有成本效益的金属氢氧化物/氧化物纳米结构的生长可能对先进的能量存储设备应用有用。

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