Department of Nano Convergence Engineering, Jeonbuk National University, Jeonju, Jeonbuk, 54896, Republic of Korea.
Carbon Composite Research Centre, Department of Polymer-Nano Science and Technology, Jeonbuk National University, Jeonju, Jeonbuk, 54896, Republic of Korea.
Small. 2022 Feb;18(5):e2104462. doi: 10.1002/smll.202104462. Epub 2021 Nov 30.
The flexible electrochromic Zn-ion battery (FE-ZiB), a newly born energy-storage technology having both electrochromic characteristics and energy-storage capability in a single device, will be a promising technology for the future transparent wearable electronics. However, the current technology limits the fabrication of FE-ZIB because the zinc (Zn) anode material is opaque and rigid. The development of a flexible and transparent Zn anode is the key factor to overcoming the current limitation. Here, for the first time, a flexible, transparent zinc-nanofiber network anode electrode (Zn@Ni@AgNFs) is reported for an FE-ZiB device that yields a remarkable electrochemical performance of a high areal capacity of 174.82 mA h m at 0.013 mA cm applied current density, high optical contrast (50%), and excellent mechanical flexibility. The fabricated FE-ZiB device also exhibits a high volumetric energy density of 378.8 W h m at a power density of 562.7 W m . Besides, the FE-ZiB demonstrates excellent electrochromic capability with a reversible color transition from a transparent in a discharged state (0.3 V) to a dark bluish-violet in a charged state (1.6 V). These results highlight a new pathway for the development of transparent batteries for smart wearable electronic devices.
柔性电致变色锌离子电池(FE-ZiB)是一种新兴的储能技术,在单个器件中同时具有电致变色特性和储能能力,有望成为未来透明可穿戴电子产品的一项有前途的技术。然而,目前的技术限制了 FE-ZiB 的制造,因为锌(Zn)阳极材料是不透明和刚性的。开发柔性透明锌阳极是克服当前限制的关键因素。在这里,首次报道了一种用于 FE-ZiB 器件的柔性透明锌纳米纤维网络阳极电极(Zn@Ni@AgNFs),该器件表现出出色的电化学性能,在 0.013 mA cm 的应用电流密度下具有高达 174.82 mA h m 的高面积容量、高光学对比度(50%)和出色的机械柔韧性。所制造的 FE-ZiB 器件还在 562.7 W m 的功率密度下表现出 378.8 W h m 的高体积能量密度。此外,FE-ZiB 表现出优异的电致变色能力,可在 0.3 V 的放电状态下从透明状态到 1.6 V 的深蓝紫色的可逆颜色转变。这些结果为开发用于智能可穿戴电子设备的透明电池开辟了一条新途径。