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首页> 外文期刊>Advanced Science >Scalable Wire‐Type Asymmetric Pseudocapacitor Achieving High Volumetric Energy/Power Densities and Ultralong Cycling Stability of 100 000 Times
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Scalable Wire‐Type Asymmetric Pseudocapacitor Achieving High Volumetric Energy/Power Densities and Ultralong Cycling Stability of 100 000 Times

机译:可扩展的线型非对称伪电容器,可实现高体积能量/功率密度和超长循环稳定性(100,000次)

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Wire‐shaped asymmetric pseudocapacitors with both pseudocapacitive cathode and anode are promising in facilitating device assembly and provide highly efficient power sources for wearable electronics. However, it is a great challenge to simultaneously obtain high energy and power as well as ultralong cycling life for practical demands of such devices. Herein, a device design with new cathode/anode coupling is proposed to achieve excellent comprehensive performance in a wire‐type quasi‐solid‐state asymmetric pseudocapacitor (WQAP). The hierarchical α‐MnO 2 nanorod@δ‐MnO 2 nanosheet array cathode and MoO 2 @C nanofilm anode are directly grown on flexible tiny Ti wires by well‐established hydrothermal and electrodeposition techniques, which ensures rapid charge/mass transport kinetics and the sufficient utilization of pseudocapacitance. The nanoarray/film electrode also facilitates integration with gel electrolyte of polyvinyl alcohol–LiCl, guaranteeing the durability. The resulting WQAP with 2.0 V voltage delivers high volumetric energy and power densities (9.53 mWh cm ?3 and 22720 mW cm ?3 , respectively) as well as outstanding cycling stability over 100 000 times, surpassing all the previously reported WQAPs. In addition, the device can be facilely connected in parallel or in series with minimal internal resistance, and be fabricated at the 1 m scale with excellent flexibility. This work opens the way to develop high‐performance integrated wire supercapacitors.
机译:具有伪电容阴极和阳极的线形非对称伪电容器在促进设备组装方面很有希望,并为可穿戴电子设备提供高效的电源。然而,对于此类装置的实际需求而言,同时获得高能量和功率以及超长循环寿命是一个巨大的挑战。在此,提出了一种具有新的阴极/阳极耦合的器件设计,以在线型准固态非对称伪电容器(WQAP)中实现出色的综合性能。分层的α-MnO2纳米棒@δ-MnO2纳米片阵列阴极和MoO 2 @C纳米膜阳极通过成熟的水热和电沉积技术直接在柔性微小Ti线上生长,从而确保了快速的电荷/质量传输动力学和足够的利用伪电容。纳米阵列/薄膜电极还有助于与聚乙烯醇– LiCl的凝胶电解质结合,从而确保了耐用性。所得的具有2.0 V电压的WQAP具有高体积能量和功率密度(分别为9.53 mWh cm?3和22720 mW cm?3),并且在10万次以上时具有出色的循环稳定性,超过了以前报道的所有WQAP。另外,该装置可以以最小的内部电阻方便地并联或串联连接,并以极佳的柔性在1 m的规模上制造。这项工作为开发高性能集成式导线超级电容器开辟了道路。

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