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Oxygen vacancy-rich doped CDs@graphite felt-600 heterostructures for high-performance supercapacitor electrodes

机译:掺氧vacancy-rich CDs@graphite感觉- 600异质结构的高性能超级电容器电极

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摘要

Carbon dots (CDs) have attracted much attention owing to their distinctive 0D chemical structure, ultra-small size, and intrinsic surface/edge defects, and have been widely used in many kinds of research fields. In this work, a facile method to synthesize an oxygen vacancy-rich doped CDs@graphite felt-600 heterostructure with outstanding electrochemical properties is presented. The electron spin resonance (ESR) provides clear evidence for the existence of abundant oxygen vacancies in the CDs@graphite felt-600 heterostructure. The as-synthesized CDs@graphite felt-600 shows superior areal specific capacitance (5.99 F cm(-2)), due to abundant oxygen vacancies and extensive surface/edge defects in the heterostructure. In addition, a home-made coin cell supercapacitor (SC) with CDs@graphite felt-600 as the electrode delivers a large areal energy density of 20.7 mu W h cm(-2) at a power density of 150.0 mu W cm(-2). To determine the charge storage mechanism at the interface of CDs@graphite felt-600, the binding energies between the CDs and graphite felt are calculated by density functional theory (DFT).
机译:碳点(CDs)吸引了太多的关注由于他们独特的0 d化学结构,超小尺寸,表面和内在/边缘缺陷,已广泛应用于多种的研究领域。合成一个氧vacancy-rich掺杂CDs@graphite感觉- 600异质结构优秀的电化学性能是提出了。提供清晰的存在的证据丰富的氧气CDs@graphite空缺感觉- 600异质结构。CDs@graphite感觉- 600显示了优越的区域比电容(5.99 F厘米(2)),由于丰富的氧空位和广泛表面异质结构/边缘缺陷。此外,自制的硬币电池超级电容器(SC) CDs@graphite感觉- 600电极提供一个大型区域能量密度为20.7亩W h厘米(2)功率密度为150.0μW厘米(2)。CDs@graphite接口的感觉- 600cd和石墨之间的结合能密度泛函理论计算了的感觉(DFT)。

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