光催化
聚乳酸
异质结
化学
催化作用
丙氨酸
化学工程
氧化还原
电子转移
纳米技术
载流子
降级(电信)
可见光谱
协同催化
制作
光化学
工作(物理)
科技与社会
作者
Zhang-Hui Xia,Longfei Lin,Xiao Chen,Jianxin Zhai,Cheng Xue,Shuaiqiang Jia,Jiapeng Jiao,Mengke Dong,Wanying Han,Xinrui Zheng,Ting Deng,Xinyu Zou,Chensheng Xian,Haihong Wu,Buxing Han
摘要
The application of solar photocatalysis under mild conditions offers a promising approach to mitigating plastic pollution. In this study, a Pt single-atom catalyst (Pt SAs) supported on a CdS-TiO2 heterojunction (CTA) was synthesized to enable the efficient one-pot conversion of polylactic acid (PLA) into the high-value chemical alanine via integrated depolymerization, oxidation, ammonification, and reduction reactions. The Pt SAs-CTA catalyst achieved an outstanding alanine production rate of 12.1 mmol gcat-1 h-1. Structural and optical characterizations, along with theoretical calculations, reveal that a two-channel electron transfer mechanism (TCETM) synergistically promotes charge separation and transport while suppressing electron-hole recombination, thereby enhancing the redox capability of the photocatalyst. Moreover, Pt SAs-CTA also exhibits excellent performance in the conversion of commercial-grade PLA under solar-simulated irradiation. This work elucidates the atomic-level charge dynamics of Pt single atoms in heterojunction photocatalysis and offers a viable strategy for upcycling plastic waste into value-added chemicals.
科研通智能强力驱动
Strongly Powered by AbleSci AI