摩擦电效应
材料科学
多孔性
能量收集
湿度
纳米技术
相对湿度
光电子学
功率密度
功率(物理)
复合材料
量子力学
热力学
物理
作者
Qazi Muhammad Saqib,Ishfaq Ahmad,Abdul Mannan,Javeed Mahmood,Shahid Ameen,Chandrashekhar S. Patil,Muhammad Noman,Jungmin Kim,Mahmut Sait Okyay,Swapnil R. Patil,Youngbin Ko,Hyuk‐Jun Noh,Bryan M. Wong,BongSoo Kim,Jinho Bae,Jong‐Beom Baek
标识
DOI:10.1002/adma.202311029
摘要
Abstract Practical application of triboelectric nanogenerators (TENGs) has been challenging, particularly, under harsh environmental conditions. This work proposes a novel 3D‐fused aromatic ladder (FAL) structure as a tribo‐positive material for TENGs, to address these challenges. The 3D‐FAL offers a unique materials engineering platform for tailored properties, such as high specific surface area and porosity, good thermal and mechanical stability, and tunable electronic properties. The fabricated 3D‐FAL‐based TENG reaches a maximum peak power density of 451.2 µW cm −2 at 5 Hz frequency. More importantly, the 3D‐FAL‐based TENG maintains stable output performance under harsh operating environments, over wide temperature (−45–100 °C) and humidity ranges (8.3–96.7% RH), representing the development of novel FAL for sustainable energy generation under challenging environmental conditions. Furthermore, the 3D‐FAL‐based TENG proves to be a promising device for a speed monitoring system engaging reconstruction in virtual reality in a snowy environment.
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