摩擦电效应
材料科学
窗口(计算)
能量收集
电
发电机(电路理论)
机械能
智能材料
功率(物理)
纳米技术
计算机科学
电气工程
工程类
物理
复合材料
操作系统
量子力学
作者
Yuchao Li,Mingmei Wang,Chao Zhang,Chun‐Chuan Wang,Chun‐Chuan Wang,Wanghuai Xu,Shouwei Gao,Yongsen Zhou,Chun‐Ta Wang,Chun‐Ta Wang,Zuankai Wang
标识
DOI:10.1002/adom.202102274
摘要
Abstract Self‐powered smart windows are highly attractive for the development of energy‐efficient buildings system, owing to their superior capacities in regulating the energy and information exchange between indoor and outdoor environments. Although immense achievement has been made in the self‐powered cholesteric liquid crystal smart window (CLC‐SW) based on triboelectric nanogenerators (TENGs), such a self‐powered manner is limited by some challenges such as the need of the continuous input of external forces, as well as unstable performance owing to inevitable mechanical abrasion of TENGs surface. Here, a fully self‐powered CLC‐SW is developed by leveraging droplet‐based electricity generator (DEG) as a spontaneous and sustained energy reservoir, in which DEG has superior capacities to harvest ceaseless energy from ambient environment and circumvent any additional electrical power input. It is demonstrated that DEG‐driven CLC‐SW exhibits a rapid response and high tunability in the transformation between the transparent state and the hazy state in a wide range of solar spectrum. Moreover, both the transparent and hazy modes can be self‐sustained for a long time, also be reversibly switched by the gentle mechanical pressure loading. The DEG‐driven smart window developed in this work can find applications such as indoor temperature modulation and privacy information protection.
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