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用于工业规模电催化聚酯塑料升级回收的非晶态-晶态氧化镍快速表面重构

Rapid Surface Reconstruction of Amorphous-Crystalline NiO for Industrial-Scale Electrocatalytic PET Upcycling.

作者信息

Ding Wei, Ji Dongxiao, Wang Kangkang, Li Yinghui, Luo Qingliang, Wang Rongwu, Li Linlin, Qin Xiaohong, Peng Shengjie

机构信息

Key Laboratory of Textile Science and Technology of Ministry of Education, College of Textiles, Donghua University, Shanghai, 201620, China.

College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing, 210016, China.

出版信息

Angew Chem Int Ed Engl. 2025 Feb 3;64(6):e202418640. doi: 10.1002/anie.202418640. Epub 2024 Nov 18.

Abstract

The conversion of plastic waste into valuable chemicals through innovative and selective nano-catalysts offers significant economic benefits and positive environmental impacts. However, our current understanding of catalyst design capable of achieving industrial-grade current densities is limited. Herein, we develop a self-supported amorphous-crystalline NiO electrocatalyst for the electrocatalytic upcycling of polyethylene terephthalate (PET) into formate and hydrogen fuel. The catalyst achieves an industrial current density of over 1 A cm at 1.5 V vs. RHE, with an 80 % Faradaic efficiency and a formate production rate of 7.16 mmol cm h. In situ Raman spectroscopy, X-ray absorption spectroscopy, and density functional theory calculations reveal that the rapid transformation of amorphous-crystalline NiO into γ-NiOOH at the amorphous-crystalline interface provides a thermodynamic advantage for formate desorption, leading to the high activity required for industrial applications, which is challenging to achieve for fully crystalline NiO. A techno-economic analysis indicates that recycling waste PET using this catalytic process could generate a profit of $582 per ton. This work presents a cost-effective and highly efficient approach to promoting the sustainable utilization of waste PET.

摘要

通过创新的选择性纳米催化剂将塑料废物转化为有价值的化学品具有显著的经济效益和积极的环境影响。然而,我们目前对能够实现工业级电流密度的催化剂设计的理解有限。在此,我们开发了一种自支撑的非晶态-晶态NiO电催化剂,用于将聚对苯二甲酸乙二酯(PET)电催化升级循环为甲酸盐和氢燃料。该催化剂在相对于可逆氢电极(RHE)为1.5 V时实现了超过1 A cm的工业电流密度,法拉第效率为80%,甲酸盐产率为7.16 mmol cm h。原位拉曼光谱、X射线吸收光谱和密度泛函理论计算表明,非晶态-晶态NiO在非晶态-晶态界面处快速转变为γ-NiOOH为甲酸盐解吸提供了热力学优势,从而实现了工业应用所需的高活性,而这对于完全结晶的NiO来说是具有挑战性的。技术经济分析表明,使用这种催化工艺回收废PET每吨可产生582美元的利润。这项工作提出了一种经济高效的方法来促进废PET的可持续利用。

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