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Carbon-Enriched Cobalt Phosphide with Assorted Nanostructure as a Multifunctional Electrode for Energy Conversion and Storage Devices

机译:富含碳的钴磷脂,具有各种纳米结构作为能量转换和存储设备的多功能电极

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摘要

A single-step hydrothermal technique is applied to prepare cobalt phosphide with multifarious nanostructures to signify its multifunctional capabilities. The prepared electrodes were intensely analysed for both the energy conversion and energy storage systems. The acquired Co-P with the assorted morphology of scaffolds and spherical of Co2P/C electrode inspires with a significantly lower oxygen evolution reaction (OER) (271 mVeh10T) and hydrogen evolution reaction (HER) (207 mVeh10T) overpotentials to accelerate progressive electrocatalytic activity. Additionally, the energy storage capacity was revealed with the Co2P electrode delivering an enriched specific capacity (322 C g~(-1) at 1 A g~(-1)) in conjunction with noteworthy rate capability (83%) and durable cycling stability (10000 cycles). Overall, an aqueous supercapattery device (Co2P/C k AC) was fabricated providing superior energy density (35 Wh kg-1) and an improved power density (5333 W kg-1). The assembled water splitting system demanded a low cell voltage of 1.63 V to afford a high current density of 10 mAcm-2. Moreover, the fabricated Co2P/CkAC supercapattery coupled with the assembled water splitting system, to promote a supercapattery driven water splitting system profoundly proving the Co2P propensity of handling the multifunctional challenges in terms of both storage and conversion aspects.
机译:采用单步水热技术来制备具有多种纳米结构的钴磷化物,以表示其多功能功能。对制备的电极进行了对能量转化和能量存储系统的深入分析。获得的CO-P具有脚手架的各种形态和CO2P/C电极球形的形态,其氧气进化反应(OER)明显较低(271 MVEH10T)(271 MVEH10T)和氢进化反应(HER)(207 MVEH10T)(207 MVEH10T)过度电位,从。此外,通过二氧化碳电极以1 a g〜(-1)的形式揭示了储能能力(322 c g〜(-1)),并与值得注意的速率能力(83%)和持久的循环稳定性结合使用。 (10000个周期)。总体而言,制造了水性超级容器设备(CO2P/C K AC),可提供优质的能量密度(35 WH kg-1)和提高的功率密度(5333 W kg-1)。组装的水分割系统要求低电压为1.63 V,以提供10 MACM-2的高电流密度。此外,制造的CO2P/CKAC超级盖配合了组装的水分分割系统,以促进超级盖驱动的水分裂系统,深刻证明了CO2P在存储和转换方面都在处理多功能挑战的二氧化碳倾向。

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