材料科学
石墨烯
吸附
催化作用
膜
饮用水净化
化学工程
多孔性
纳米技术
工艺工程
环境科学
环境工程
化学
复合材料
生物化学
工程类
有机化学
作者
Xinyu Huang,Liheng Li,Shuaifei Zhao,Lei Tong,Zheng Li,Zhuiri Peng,Runfeng Lin,Li Zhou,Chang Peng,Kaiping Xue,Lijuan Chen,Guanjun Cheng,Zhu Xiong,Lei Ye
标识
DOI:10.1007/s40820-022-00923-4
摘要
Increasing both clean water and green energy demands for survival and development are the grand challenges of our age. Here, we successfully fabricate a novel multifunctional 3D graphene-based catalytic membrane (3D-GCM) with active metal nanoparticles (AMNs) loading for simultaneously obtaining the water purification and clean energy generation, via a "green" one-step laser scribing technology. The as-prepared 3D-GCM shows high porosity and uniform distribution with AMNs, which exhibits high permeated fluxes (over 100 L m-2 h-1) and versatile super-adsorption capacities for the removal of tricky organic pollutants from wastewater under ultra-low pressure-driving (0.1 bar). After adsorption saturating, the AMNs in 3D-GCM actuates the advanced oxidization process to self-clean the fouled membrane via the catalysis, and restores the adsorption capacity well for the next time membrane separation. Most importantly, the 3D-GCM with the welding of laser scribing overcomes the lateral shear force damaging during the long-term separation. Moreover, the 3D-GCM could emit plentiful of hot electrons from AMNs under light irradiation, realizing the membrane catalytic hydrolysis reactions for hydrogen energy generation. This "green" precision manufacturing with laser scribing technology provides a feasible technology to fabricate high-efficient and robust 3D-GCM microreactor in the tricky wastewater purification and sustainable clean energy production as well.
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