首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Expeditious and eco-friendly fabrication of highly uniform microflower superstructures and their applications in highly durable methanol oxidation and high-performance supercapacitors
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Expeditious and eco-friendly fabrication of highly uniform microflower superstructures and their applications in highly durable methanol oxidation and high-performance supercapacitors

机译:快速而环保的高度均匀的微花上部结构的制造及其在高度耐用的甲醇氧化和高性能超级电容器中的应用

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It is important to exploit copper sulfide products with desired structures as well as their potential applications due to their simple synthesis, low-cost and low toxicity. In this work, a novel 3D copper sulfide (CuS) microflower (MF) superstructure was fabricated on a large scale through a facile, environment-friendly and inexpensive synthesis method. The as-prepared CuS superstructures with a diameter of about 4.0 +/- 0.5 gm are assembled from large amounts of interleaving nanosheets, which have a uniform thickness of about 15 +/- 3 nm. The effect of reaction time, temperature, solvents and different copper and sulfur sources on the formation of the 3D CuS MF superstructure was investigated. Furthermore, the formation mechanism was studied based on XRD and FESEM observations by time and temperature dependent experiments during the formation of the MF structures. Furthermore, the electrochemical supercapacitance and methanol oxidation properties of the 3D CuS MF superstructures were also investigated. The CuS MF superstructures have demonstrated enhanced capacitance, with a maximum specific capacity of 438 F g(-1) at 3 mA cm(-2), and good cycling stability, retaining about similar to 87% of their capacitance after 2000 charge-discharge cycles as well as improved supercapacitor energy density without drop in power density. As a catalyst for methanol electro-oxidation, the CuS MF superstructures showed high current density (7.7 mA cm(-2)); high catalytic rate constant (1.01 x 10(6) cm(3) mol(-1) s(-1)) and good long-term stability.
机译:由于其简单的合成,低成本和低毒性,开发具有所需结构及其潜在应用的硫化铜产品非常重要。在这项工作中,通过一种简便,环保且廉价的合成方法,大规模地制造了一种新颖的3D硫化铜(CuS)微型花(MF)超结构。直径约为4.0 +/- 0.5 gm的制得的CuS超结构是由大量交错的纳米片组装而成的,纳米片的均匀厚度约为15 +/- 3 nm。研究了反应时间,温度,溶剂以及不同铜和硫源对3D CuS MF超结构形成的影响。此外,基于XRD和FESEM观察,通过MF结构形成过程中与时间和温度有关的实验研究了形成机理。此外,还研究了3D CuS MF超结构的电化学超电容和甲醇氧化性能。 CuS MF上层结构已显示出增强的电容,在3 mA cm(-2)时的最大比容量为438 F g(-1),并具有良好的循环稳定性,在2000次充放电后保留了约87%的电容循环以及改进的超级电容器能量密度,而不会降低功率密度。作为甲醇电氧化的催化剂,CuS MF超结构显示出高电流密度(7.7 mA cm(-2));高催化速率常数(1.01 x 10(6)cm(3)mol(-1)s(-1))和良好的长期稳定性。

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