Liu Yongpeng, Yeung Celine Wing See, Reisner Erwin
Yusuf Hamied Department of Chemistry, University of Cambridge Cambridge CB2 1EW UK
Energy Environ Sci. 2025 Apr 11. doi: 10.1039/d5ee00689a.
Pairing plastic waste reforming and carbon dioxide (CO) utilisation to produce chemical energy carriers provides an attractive means to mitigate waste and create value, but challenges persist in achieving selective product formation, separation and overall device integration. Herein, we present an organic-inorganic photoelectrochemical (PEC) tandem device that enables the solar-powered comproportionation of plastic waste and CO into a single product, formate. The hematite photoanode achieves continuous and selective oxidation of alkaline pre-treated polyethylene terephthalate (PET) plastics to formate, while an organic semiconductor photocathode coupled to a biocatalyst achieves selective CO photoreduction to formate under neutral pH conditions. The integrated PEC device operates without external voltage input to achieve simultaneous plastic oxidation and CO reduction, leading to a near-200% formate Faradaic efficiency and an average formate production rate of 11 μmol cm h for 10 h under simulated AM1.5G irradiation at room temperature. This work introduces a strategy for the visible-light promoted processing of two distinct waste streams into a single product, thereby enhancing product formation rates, reducing limitations arising from product separation and advancing efforts toward a sustainable circular industry.
将塑料废物重整与二氧化碳(CO)利用相结合以生产化学能量载体,为减少废物和创造价值提供了一种有吸引力的方法,但在实现选择性产物形成、分离和整个装置集成方面仍存在挑战。在此,我们展示了一种有机-无机光电化学(PEC)串联装置,该装置能够将塑料废物和CO太阳能驱动的归中反应转化为单一产物甲酸盐。赤铁矿光阳极实现了对碱性预处理聚对苯二甲酸乙二酯(PET)塑料的连续且选择性氧化生成甲酸盐,而与生物催化剂耦合的有机半导体光阴极在中性pH条件下实现了对CO的选择性光还原生成甲酸盐。集成的PEC装置在无外部电压输入的情况下运行,以实现同时的塑料氧化和CO还原,在室温下模拟AM1.5G光照下10小时内,甲酸盐的法拉第效率接近200%,平均甲酸盐产率为11 μmol cm⁻² h⁻¹。这项工作引入了一种策略,用于将两种不同的废物流可见光促进加工成单一产物,从而提高产物形成速率,减少产物分离带来的限制,并推动可持续循环产业的发展。