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Hierarchical nickel-cobalt selenide nanoparticles/nanosheets as advanced electroactive battery materials for hybrid supercapacitors

机译:分层镍 - 钴硒化型纳米粒子/纳米蛋白酶作为杂交超级电容器的先进电活性电池材料

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Transition metal selenides are very ideal as electroactive battery material for hybrid supercapacitors owing to their high electrochemical activity and metallic electrical conductivity, but their environmental friendly fabrication and complex structure construction is still a big challenge. Here, a simple low temperature selenization method has been developed to green synthesize a series of Ni-Co selenide samples with a hierarchical nanoparticleManosheet structure. The hierarchical structure has been constructed by the recrystallization of sample during the selenization process, which can be greatly influenced by the Co composition. The specific hierarchical structure provides more electroactive sites for charge storage, and the optimized synergy between the Ni and Co compositions further greatly tunes the charge storage performance, as a result, the Ni0.67Co0.33Se2 shows the best performance with a specific capacity of 447 C g(-1) at 1 A which is much higher than the Ni-Co selenides with the other Ni to Co ratios and the Ni-Co oxides. The Ni0.67Co0.33Se2 retains 97% of the specific capacity after 2000 cycles, demonstrating its excellent cycling stability. A hybrid supercapacitor has been assembled using Ni0.67Co0.33Se2 as the positive electrode, which shows both high specific energy and specific power performances. (C) 2019 Elsevier Inc. All rights reserved.
机译:由于其高电化学活性和金属电导率,过渡金属硒化物是用于混合超级电容器的电活性电池材料,但它们的环保制造和复杂的结构构造仍然是一个很大的挑战。这里,已经开发了一种简单的低温硒化方法,以绿色合成一系列Ni-Co硒化物样品,具有分层纳米颗粒MANSOP表结构。通过在硒化过程中重结晶的样品的重结晶构建的层级结构,其可以受到共同组合物的大量影响。特定分层结构提供了用于电荷存储的电更多位点,和Ni和Co的组合物之间的协同作用最优化进一步大大调谐电荷存储性能,作为一个结果,Ni0.67Co0.33Se2示出了具有447的特定能力的最佳性能在1A的C g(-1)高于Ni-Co硒化物,其它Ni与Co比率和Ni-Co氧化物高得多。 NI0.67CO0.33Se2在2000年循环后保留了97%的具体容量,证明了其优异的循环稳定性。使用Ni0.67CO0.33Se2组装混合超级电容器作为正极,其显示出高特定能量和特定功率性能。 (c)2019 Elsevier Inc.保留所有权利。

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