Liu Binbin, Zhang Qinghua, Zhang Lina, Xu Caixia, Pan Zhenghui, Zhou Qiuxia, Zhou Weijia, Wang John, Gu Lin, Liu Hong
Institute for Advanced Interdisciplinary Research (iAIR), Shandong Provincial Key Laboratory of Preparation and Measurement of Building Materials, Collaborative Innovation Center of Technology and Equipment for Biological Diagnosis and Therapy in Universities of Shandong, University of Jinan, Jinan, Shandong Province, 250022, China.
Department of Materials Science and Engineering, National University of Singapore, Singapore, 117574, Singapore.
Adv Mater. 2022 May;34(19):e2106309. doi: 10.1002/adma.202106309. Epub 2022 Apr 8.
Graphene-constructed micro-supercapacitors (MSCs) have received considerable attention recently, as part of the prospective wearable and portable electronics, owing to their distinctive merits of well-tunable power output, robust mechanical flexibility, and long cyclability. In the current work, the focus is on the fabrication of high-quality and solution-processible chlorine-doped graphene (Cl-G) nanosheets through a handy yet eco-friendly electrochemical exfoliation process. The Cl-G is characteristic of the large lateral size of ≈10 µm, abundant nanopores with sizes of as small as 2 nm, as well as numerous steps from the rugged surface. Arising from the rich chemical functionalities and structure defects, the all-solid-state MSC built by using Cl-G via a facile mask-assisted method delivers a large reversible capacity and ultrasteady charge/discharge performance, with the capacitance being maintained at 98.1% even after 250 000 cycles. The Cl-G-MSC with EMIMBF /PVDF-HFP as the electrolyte displays a large volumetric capacitance up to 160 F cm at the scan rate of 5 mV s and high volumetric energy density of 97.9 mW h cm at the power density of 3.4 W cm . The device can also output a high voltage up to 3.5 V and robust capability with 94.8% of capacitance retention upon 10 000 cycles.
作为未来可穿戴和便携式电子产品的一部分,石墨烯构建的微型超级电容器(MSCs)近来备受关注,这归因于其具有可良好调节功率输出、强大机械柔韧性和长循环寿命等独特优点。在当前工作中,重点是通过一种简便且环保的电化学剥离工艺制备高质量且可溶液加工的氯掺杂石墨烯(Cl-G)纳米片。Cl-G的特征在于其横向尺寸约为10 µm,具有大量尺寸小至2 nm的纳米孔,以及崎岖表面上的众多台阶。由于丰富的化学官能团和结构缺陷,通过简便的掩膜辅助方法使用Cl-G构建的全固态MSC具有大的可逆容量和超稳定的充放电性能,即使在250000次循环后电容仍保持在98.1%。以EMIMBF /PVDF-HFP作为电解质的Cl-G-MSC在扫描速率为5 mV s时显示出高达至160 F/cm³的大体积电容,在功率密度为3.4 W/cm³时具有97.9 mW h/cm³的高体积能量密度。该器件还可输出高达3.5 V的高电压,并且在10000次循环后具有94.8%的电容保持率的强大性能。