串联
光催化
材料科学
纳米技术
可持续能源
催化作用
共价键
工作(物理)
载流子
化学反应
原子经济
化学能
能量转换
太阳能转换
有机反应
高效能源利用
金属有机骨架
反应条件
化学键
工艺工程
有机合成
循环经济
可持续设计
电荷(物理)
金属
作者
Da Che,Hao Liu,T. Sun,Hao Feng,Gengyuan Zhang,Xueying Cheng,Tianyu Zhou,Renquan Guan,Yaqian Lan
标识
DOI:10.1002/adfm.202532106
摘要
ABSTRACT Photocatalytic tandem reactions demonstrate considerable potential in fine chemical synthesis, environmental remediation, and energy conversion by integrating multiple reaction steps into a unified process. This technology employs photogenerated charge carriers to drive sequential transformations, achieving simultaneous step economy and atom economy, thereby offering a sustainable approach for green chemical conversion. The properties of the crystalline framework materials are achieved through their customizable structures and active sites, allowing for the synergistic catalysis of multi‐step photocatalytic tandem reactions via nanoconfinement effects, which leads to the simultaneous enhancement of efficiency, selectivity, and stability. This review systematically analyzes the distinctive advantages of metal organic frameworks, covalent organic frameworks, and composites based on organic framework in photocatalytic tandem reactions, with particular emphasis on their innovative implementations in sustainable synthesis, energy transformation, and environmental management. The work elucidates fundamental structure‐property relationships between crystalline framework material characteristics and reaction pathways, establishes theoretical foundations for designing advanced photocatalytic tandem reaction systems, and outlines future research directions in sustainable chemistry applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI