石墨烯
化学气相沉积
纳米技术
碳纤维
沉积(地质)
纤维
化学
玻璃纤维
材料科学
复合材料
复合数
沉积物
生物
古生物学
作者
Yuyao Yang,Hao Yuan,Yi Cheng,Fan Yang,Mengxiong Liu,Kewen Huang,Kun Wang,Shuting Cheng,Ruojuan Liu,Wenjuan Li,Fushun Liang,Kangyi Zheng,Longfei Liu,Ce Tu,Xiaobai Wang,Yue Qi,Zhongfan Liu
摘要
Graphene chemical vapor deposition (CVD) growth directly on target using substrates presents a significant route toward graphene applications. However, the substrates are usually catalytic-inert and special-shaped; thus, large-scale, high-uniformity, and high-quality graphene growth is challenging. Herein, graphene-skinned glass fiber fabric (GGFF) was developed through graphene CVD growth on glass fiber fabric, a Widely used engineering material. A fluid dynamics rectification strategy was first proposed to synergistically regulate the distribution of carbon species in 3D space and their collisions with hierarchical-structured substrates, through which highly uniform deposition of high-quality graphene on fibers in large-scale 3D-woven fabric was realized. This strategy is universal and applicable to CVD systems using various carbon precursors. GGFF exhibits high electrical conductivity and photothermal conversion capability, based on which a natural energy harvester was first developed. It can harvest both solar and raindrop energy through solar heating and droplet-based electricity generating, presenting promising potentials to alleviate energy burdens.
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