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
Zhanghui 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–TiO 2 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 g cat –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.
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