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一步法合成具有多重作用的十二烷基硫酸钠单层 MnO2 纳米片用于高性能赝电容器。

One-Step Synthesis of Single-Layer MnO2 Nanosheets with Multi-Role Sodium Dodecyl Sulfate for High-Performance Pseudocapacitors.

机构信息

Key Laboratory of Bionic Engineering (Ministry of Education), College of Biological and Agricultural Engineering, Jilin University, Changchun, Jilin, 130022, P. R. China.

出版信息

Small. 2015 May 13;11(18):2182-91. doi: 10.1002/smll.201402222. Epub 2015 Jan 7.

DOI:10.1002/smll.201402222
PMID:25565035
Abstract

A template-free, one-step and one-phase synthesis of single-layer MnO2 nanosheets has been developed via a redox reaction between KMnO4 and sodium dodecyl sulfate (SDS). The successful formation of single-layer MnO2 nanosheets has been confirmed by the characteristic absorption around 374 nm and the typical thickness of ~0.95 nm. The slow redox reaction controlled by the gradual hydrolysis of SDS is found to be the key factor for the successful formation of single-layer nanosheets. SDS not only serves as the precursor of dodecanol to reduce KMnO4 , but also aids the formation of single-layer MnO2 nanosheets as a structure-inducing agent. The resultant single-layer MnO2 nanosheets possess superior specific capacitance, which can be attributed to the extended surface and high porosity of MnO2 nanosheets on the electrode. The MnO2 nanosheets also show excellent durability, retaining 91% of the starting capacitance after 10 000 charge/discharge cycles. Moreover, the symmetric pseudocapacitor based on the synthesized single-layer MnO2 nanosheets exhibits a high specific capacitance, indicating great potential for real energy storage. Therefore, it has been demonstrated for the first time that a single readily available reagent, SDS, can play multiple roles in reducing KMnO4 to conveniently yield single-layer MnO2 nanosheets as a high-performance pseudocapacitive material.

摘要

一种无模板、一步和单相的单层 MnO2 纳米片合成方法,通过 KMnO4 和十二烷基硫酸钠(SDS)之间的氧化还原反应实现。单层 MnO2 纳米片的成功形成通过约 374nm 的特征吸收和典型的~0.95nm 的厚度得到确认。发现由 SDS 逐渐水解控制的缓慢氧化还原反应是成功形成单层纳米片的关键因素。SDS 不仅作为十二烷醇的前体来还原 KMnO4,而且还作为结构诱导剂来辅助单层 MnO2 纳米片的形成。所得的单层 MnO2 纳米片具有优异的比电容,这归因于电极上 MnO2 纳米片的扩展表面和高孔隙率。MnO2 纳米片还表现出优异的耐久性,在 10000 次充放电循环后保留了起始电容的 91%。此外,基于合成的单层 MnO2 纳米片的对称赝电容器表现出高比电容,表明其在实际储能方面具有很大的潜力。因此,首次证明了一种单一的易得试剂 SDS 可以在还原 KMnO4 时发挥多种作用,从而方便地得到作为高性能赝电容材料的单层 MnO2 纳米片。

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