Yue Cheng-Yang, Lei Xiao-Wu, Han Yong-Fang, Lu Xin-Xiu, Tian Ya-Wei, Xu Jing, Liu Xiao-Fan, Xu Xin
Key Laboratory of Inorganic Chemistry in Universities of Shandong, Department of Chemistry and Chemical Engineering, Jining University , Qufu, Shandong 273155, P. R. China.
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences , Fuzhou, Fujian 350002, P. R. China.
Inorg Chem. 2016 Dec 5;55(23):12193-12203. doi: 10.1021/acs.inorgchem.6b01770. Epub 2016 Nov 23.
With mixed transition-metal (TM) complex, alkali-metal cations, or halogen anions as structure-directing agents, two types of two-dimensional (2D) layered inorganic-organic hybrid silver bromides were prepared and structurally characterized as K[TM(2,2-bipy)]AgBr (TM = Ni (1), Co (2), Zn (3), Fe (4)) and [TM(2,2-bipy)]AgBr (TM = Ni (5), Co (6), Zn (7), Fe (8)). Compounds 1-4 feature 2D microporous anionic [AgBr] layers composed of [AgBr] secondary building units based on AgBr tetrahedral units, and compounds 5-8 contain 2D [AgBr] layers built from the one-dimensional complex [AgBr] and [AgBr] chains. The photosensitization of TM complex dyes led to the narrow semiconducting behaviors with tunable band gaps of 1.73-2.71 eV for the title compounds, which result in excellent and stable photocatalytic degradation activities over organic pollutants under visible-light irradiation. The studies of photocatalytic mechanism based on radical-trapping experiments and electronic band structural calculation show that the TM complex cations play important roles in the photocatalytical activities and photochemical stabilities due to their excellent separating abilities for photogenerated carriers. This technique affords one new type of visible-light-driven photocatalyst and facilitates the integration of 2D layered materials and semiconducting photocatalytic properties into one hybrid d TM halogenide.
以混合过渡金属(TM)配合物、碱金属阳离子或卤素阴离子作为结构导向剂,制备了两种类型的二维(2D)层状无机 - 有机杂化溴化银,并对其结构进行了表征,分别为K[TM(2,2 - 联吡啶)]AgBr(TM = Ni (1)、Co (2)、Zn (3)、Fe (4))和[TM(2,2 - 联吡啶)]AgBr(TM = Ni (5)、Co (6)、Zn (7)、Fe (8))。化合物1 - 4具有由基于AgBr四面体单元的[AgBr]二级结构单元组成的二维微孔阴离子[AgBr]层,化合物5 - 8包含由一维配合物[AgBr]和[AgBr]链构建的二维[AgBr]层。TM配合物染料的光敏化导致标题化合物具有窄的半导体行为,其带隙可调,范围为1.73 - 2.71 eV,这使得它们在可见光照射下对有机污染物具有优异且稳定的光催化降解活性。基于自由基捕获实验和电子能带结构计算的光催化机理研究表明,TM配合物阳离子由于其对光生载流子的优异分离能力,在光催化活性和光化学稳定性中发挥重要作用。该技术提供了一种新型的可见光驱动光催化剂,并促进了二维层状材料与半导体光催化性能集成到一种混合d族TM卤化物中。