State Key Laboratory of Fine Chemicals, Chemical Engineering Department, Dalian University of Technology Linggong Road 2#, Dalian 116024, China.
Sci Rep. 2016 Sep 12;6:33241. doi: 10.1038/srep33241.
Multishelled NiO hollow microspheres for high-performance supercapacitors have been prepared and the formation mechanism has been investigated. By using resin microspheres to absorb Ni(2+) and subsequent proper calcinations, the shell numbers, shell spacing and exterior shell structure were facilely controlled via varying synthetic parameters. Particularly, the exterior shell structure that accurately associated with the ion transfer is finely controlled by forming a single shell or closed exterior double-shells. Among multishelled NiO hollow microspheres, the triple-shelled NiO with an outer single-shelled microspheres show a remarkable capacity of 1280 F g(-1) at 1 A g(-1), and still keep a high value of 704 F g(-1) even at 20 A g(-1). The outstanding performances are attributed to its fast ion/electron transfer, high specific surface area and large shell space. The specific capacitance gradually increases to 108% of its initial value after 2500 cycles, demonstrating its high stability. Importantly, the 3S-NiO-HMS//RGO@Fe3O4 asymmetric supercapacitor shows an ultrahigh energy density of 51.0 Wh kg(-1) at a power density of 800 W kg(-1), and 78.8% capacitance retention after 10,000 cycles. Furthermore, multishelled NiO can be transferred into multishelled Ni microspheres with high-efficient H2 generation rate of 598.5 mL H2 min(-1) g(-1)Ni for catalytic hydrolysis of NH3BH3 (AB).
多壳层 NiO 空心微球用于高性能超级电容器的制备及其形成机理的研究。通过使用树脂微球来吸附 Ni(2+),并随后进行适当的煅烧,可以通过改变合成参数来轻松控制壳层数、壳间距和外壳结构。特别地,通过形成单个壳或封闭的外双层壳,精细地控制与离子传输准确相关的外壳结构。在多壳层 NiO 空心微球中,具有外单壳层微球的三层 NiO 在 1 A g(-1)时表现出 1280 F g(-1)的显著容量,并且即使在 20 A g(-1)时仍保持 704 F g(-1)的高值。优异的性能归因于其快速的离子/电子转移、高比表面积和大的壳层空间。在 2500 次循环后,比电容逐渐增加到初始值的 108%,表现出高稳定性。重要的是,3S-NiO-HMS//RGO@Fe3O4 非对称超级电容器在 800 W kg(-1)的功率密度下具有 51.0 Wh kg(-1)的超高能量密度,并且在 10000 次循环后保持 78.8%的电容保持率。此外,多壳层 NiO 可以转化为多壳层 Ni 微球,对于 NH3BH3 (AB)的催化水解具有 598.5 mL H2 min(-1) g(-1)Ni 的高效 H2 生成速率。