Nath Akashdeep, Kumar Vikas, Shukla Ayushi, Ghosh Hirendra Nath, Mandal Sukhendu
School of Chemistry, Indian Institute of Science Education and Research Thiruvananthapuram, Kerala, 695551, India.
Institute of Nano Science and Technology, Sector-81, Knowledge City, Sahibzada Ajit Singh Nagar, Punjab, Pin - 140306, India.
Angew Chem Int Ed Engl. 2023 Aug 1;62(31):e202308034. doi: 10.1002/anie.202308034. Epub 2023 Jun 27.
We demonstrate direct evidence of photoinduced through-space intervalence charge transfer (IVCT) between two cofacially arranged redox-active pairs in metal-organic frameworks and their dynamic variation with their molecular separation. Two homologous MOFs [Co (NDC) (DPTTZ) ]. DPTTZ. DMF, 1 and [Co (BDC) (DPTTZ) ]. DMF, 2 (where NDC=naphthalene dicarboxylate, BDC=benzene dicarboxylate, DPTTZ=N, N'-di(4-pyridyl)thiazolo-[5,4-d]thiazole, DMF=N, N'-dimethyl formamide) are considered for this, whose intra-dimer distance of redox-active DPTTZ ligands differs ca. 1 Å from one system to another. Spectroelectrochemical study detects the formation of IVCT band at the NIR region between cofacially oriented DPTTZ molecules in both MOFs. Transient spectroscopy shows faster charge separation as well as charge recombination when intra-dimer distance is lesser (in MOF 2) due to stronger electronic coupling. We quantify the extent of IVCT by charge transfer integral calculation; and also by optical pump terahertz probe spectroscopy, where MOF 2 shows three times higher carrier mobility due to lesser inter-DPTTZ distance than MOF 1. These findings reveal a more localized aspect of through-space IVCT between cofacially organized redox-active pair in a three-dimensional framework.
我们展示了金属有机框架中两个共面排列的氧化还原活性对之间光诱导的空间间隔价电荷转移(IVCT)的直接证据,以及其随分子间距的动态变化。考虑了两个同系金属有机框架[Co (NDC) (DPTTZ) ]. DPTTZ. DMF, 1和[Co (BDC) (DPTTZ) ]. DMF, 2(其中NDC = 萘二甲酸酯,BDC = 苯二甲酸酯,DPTTZ = N, N'-二(4-吡啶基)噻唑并-[5,4-d]噻唑,DMF = N, N'-二甲基甲酰胺),其氧化还原活性DPTTZ配体的二聚体内距离在两个体系之间相差约1 Å。光谱电化学研究检测到在两个金属有机框架中共面取向的DPTTZ分子之间在近红外区域形成了IVCT带。瞬态光谱表明,由于更强的电子耦合,当二聚体内距离较小时(在金属有机框架2中),电荷分离以及电荷复合更快。我们通过电荷转移积分计算以及光泵太赫兹探针光谱对IVCT的程度进行了量化,其中由于DPTTZ之间的距离比金属有机框架1小,金属有机框架2显示出高三倍的载流子迁移率。这些发现揭示了三维框架中共面组织的氧化还原活性对之间空间IVCT的更局限的方面。