Henan Key Laboratory of Polyoxometalate Chemistry, Institute of Molecular and Crystal Engineering, College of Chemistry and Chemical Engineering , Henan University , Kaifeng , Henan 475004 , P.R. China.
Department of Chemistry , University of Reading , White Knights, Reading RG6 6AD , U.K.
Inorg Chem. 2020 Jan 21;59(2):1125-1136. doi: 10.1021/acs.inorgchem.9b02743. Epub 2020 Jan 3.
Polyoxotungstate supported titanocene {CpTi} clusters H{K(CpTi)PWO(PO)}·14HO (), H[NaPWO(CpTi)]·12HO (), and H[K{CpTi}{PWO(WO)}{NCH(COOK)}(NCH(CH)COOK)·22HO] () have been synthesized, and their single crystal X-ray structures have revealed unprecedented and intriguing structural features. The synthesized compounds have been characterized by various spectroscopic techniques including UV-vis, cyclic voltammogram, NMR, ESI-MS, and inductive coupled plasma spectroscopy (ICP) in solution and also by IR, TGA, and diffuse reflectance in the solid state. Clusters and are rare examples of lacunary POM supported titanocene clusters obtained by incorporating various phosphorus heteroatoms to form elusive phosphotungstate assemblies, whereas is an unprecedented organometallic as well as heteroleptic pyridyl functionalized POM. Clusters - show transient photocurrent ON/OFF behavior upon UV-light irradiation and also exhibit characteristic Ti intravalence electron transfer. This behavior is also established by their cyclic voltammograms in mixed phosphate buffers (NaHPO/NaHPO) which show the evidence of POM supported {CpTi} species in their redox solution. Furthermore, ESR line broadening is also observed in these clusters at room temperature, a fact which also confirms the formation of partially reduced/oxidized {CpTi} species leading to Ti intravalence electron transfers within all three clusters. The {CpTi} decorated polyoxometalate cluster shows improved transient photocurrent behavior which may be due to the presence of pyridyl carboxyl ions which provide better surface contact for the cluster molecule through the carboxylate moiety to the ITO electrode.
聚氧多钨酸盐负载二茂钛 {CpTi} 簇 H{K(CpTi)PWO(PO)}·14H_2O ()、H[NaPWO(CpTi)]·12H_2O () 和 H[K{CpTi}{PWO(WO)}{NCH(COOK)}(NCH(CH)_2COOK)·22H_2O] () 已被合成,其单晶 X 射线结构揭示了前所未有的有趣结构特征。所合成的化合物已通过各种光谱技术进行了表征,包括在溶液中的紫外可见光谱、循环伏安法、NMR、ESI-MS 和电感耦合等离子体光谱(ICP),以及在固态中的红外光谱、热重分析和漫反射光谱。簇 和 是通过掺入各种磷杂原子形成难以捉摸的磷钨酸盐组装体来获得的罕见的缺磷 POM 负载二茂钛簇的实例,而 是一种前所未有的有机金属和杂配吡啶官能化的 POM。簇 - 在紫外光照射下表现出瞬态光电流 ON/OFF 行为,并且还表现出特征性的 Ti 价内电子转移。这一行为也通过它们在混合磷酸盐缓冲液(NaHPO/NaHPO)中的循环伏安法得到证实,其中在氧化还原溶液中显示出 POM 负载的 {CpTi} 物种的证据。此外,在这些簇中也观察到室温下的 ESR 线宽变宽,这一事实也证实了部分还原/氧化的 {CpTi} 物种的形成,导致所有三个簇内的 Ti 价内电子转移。{CpTi} 修饰的多金属氧酸盐簇 表现出改善的瞬态光电流行为,这可能是由于存在吡啶羧酸离子,通过羧酸酯部分为簇分子提供了更好的与 ITO 电极的表面接触。