Liu Zhengfen, Li Xiaobo, Chen Jian, Li Chao, Luo Fumang, Cheng Fei-Xiang, Liu Jian-Jun
College of Chemistry and Environmental Science, Qujing Normal University, Qujing 655011, China.
Dalton Trans. 2022 May 31;51(21):8472-8479. doi: 10.1039/d2dt01003h.
Designing and developing novel hybrid materials for the effective photoconversion of organic substrates is of great importance. Crystalline hybrid heterostructures, as an attractive class of material, are composed of semiconducting organic and inorganic components with fast-responsive charge-separated properties and thus they are promising photocatalysts. Naphthalene diimides (NDIs) and decatungstate (WO) are two versatile semiconductor components that have been utilized as building blocks for the construction of functional materials for various applications. In this context, we demonstrated that the combination of an electron-deficient NDI derivative with WO resulted in an organic-inorganic hybrid compound, namely Zn(DPNDI)(WO)(DMA) (DPNDI = ,'-di-(4-pyridyl)-1,4,5,8-naphthalene diimide) (1). Because of consecutive photo-induced electron transfer processes among the components, this hybrid compound exhibits fast-responsive reversible photochromic properties, and it efficiently photocatalytically oxidizes amines to imines under mild conditions with high yields and an excellent substrate application range.
设计和开发用于有机底物有效光转化的新型杂化材料具有重要意义。晶体杂化异质结构作为一类有吸引力的材料,由具有快速响应电荷分离特性的半导体有机和无机成分组成,因此它们是很有前途的光催化剂。萘二亚胺(NDIs)和十钨酸盐(WO)是两种通用的半导体成分,已被用作构建各种应用功能材料的基石。在此背景下,我们证明了缺电子的NDI衍生物与WO的结合产生了一种有机-无机杂化化合物,即Zn(DPNDI)(WO)(DMA)(DPNDI = ,'-二-(4-吡啶基)-1,4,5,8-萘二亚胺)(1)。由于各组分之间连续的光致电子转移过程,这种杂化化合物表现出快速响应的可逆光致变色特性,并且在温和条件下能高效地将胺光催化氧化为亚胺,产率高且底物应用范围广。