光催化
材料科学
ZSM-5型
催化作用
铜
甲醇
还原(数学)
氧化态
无机化学
化学工程
光化学
冶金
沸石
金属
有机化学
化学
几何学
数学
工程类
作者
Wibawa Hendra Saputera,Adhi Satriyatama,Ignatius Dozy Mahatmanto Budi,Adhitya Gandaryus Saputro,Muhammad Haris Mahyuddin,Wahyu Prasetyo Utomo,Siska Mutiara,Hoi Ying Chung,Arramel Arramel,Fatwa F. Abdi,Dwiwahju Sasongko
标识
DOI:10.1002/admi.202500010
摘要
Abstract This study explores the enhancement of photocatalytic CO 2 reduction to methanol using Cu‐doped TiO 2 /ZSM‐5 catalysts. The catalysts are synthesized by wet impregnation, and the effects of calcination temperature and Cu doping are investigated. Comprehensive characterization techniques coupled with density functional theory (DFT) calculations reveal that the Cu δ+ /TiO 2 /ZSM‐5 (CTZ‐1) catalyst exhibits the highest photocatalytic activity, yielding methanol at 0.219 mmol g catalyst −1 h −1 , significantly outperforming other variants. The superior performance is attributed to the increased basicity, specific surface area, unique core–shell structure morphology, and the presence of Ti 3+ and Cu δ+ species, which facilitate efficient electron–hole separation. The catalysts also demonstrate stable performance over multiple cycles. DFT calculations indicate that the CO 2 reduction to methanol is energetically favored at the Cu δ+ /TiO 2 interface. This work highlights the potential of Cu δ+ /TiO 2 /ZSM‐5 catalysts in efficient and stable photocatalytic CO 2 conversion, paving the way for further optimization of Cu δ+ loading and doping strategies to enhance photocatalytic performance.
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