Walusiak Benjamin W, Raghavan Adharsh, Cahill Christopher L
Department of Chemistry, The George Washington University 800 22nd Street, NW Washington D.C. 20052 USA
RSC Adv. 2023 May 3;13(20):13477-13492. doi: 10.1039/d3ra00996c. eCollection 2023 May 2.
Halide perovskites provide a versatile platform for exploring the effect of non-covalent interactions, including halogen bonding, on material properties such as band gap, luminescence, and frontier orbital landscape. Herein we report six new zero-dimensional tellurium iodide perovskite derivatives, consisting of [TeI] octahedra charge balanced by one of several X-Py cations (X = H, Cl, Br, I, and Py = pyridinium). These compounds also feature robust halogen bonding between [TeI] octahedra and polyiodides in the form of I (1-4), I (5), or adjacent octahedra (4 and 6). These relatively strong non-covalent interactions (NCIs) are modeled by natural bond order (NBO) and second order perturbation theory (SOPT) calculations. NCIs are responsible for reducing the bandgap of these materials (measured diffuse reflectance spectroscopy) relative to those without polyiodide species. They also affect inner sphere bonding in the metal halide, exacerbating [TeI] octahedron asymmetry as compared to previously published compounds, with greater asymmetry correlating with higher van der Waals overlap of halogen-halogen contacts. We also demonstrate the ability of hydrogen and carbon bonding (which dominates in the absence of polyiodides) to affect inner sphere tellurium iodide bonding and octahedral symmetry.
卤化物钙钛矿提供了一个通用平台,用于探索包括卤键在内的非共价相互作用对诸如带隙、发光和前沿轨道态势等材料性质的影响。在此,我们报道了六种新型的零维碲碘钙钛矿衍生物,它们由[TeI]八面体组成,电荷由几种X-Py阳离子(X = H、Cl、Br、I,且Py = 吡啶鎓)之一平衡。这些化合物还具有[TeI]八面体与多碘化物之间以I(1 - 4)、I(5)或相邻八面体(4和6)形式存在的强卤键。这些相对较强的非共价相互作用(NCIs)通过自然键序(NBO)和二阶微扰理论(SOPT)计算进行建模。与没有多碘化物物种的材料相比,NCIs负责降低这些材料的带隙(通过漫反射光谱测量)。它们还影响金属卤化物中的内球键合,与先前发表的化合物相比,加剧了[TeI]八面体的不对称性,更大的不对称性与卤 - 卤接触的更高范德华重叠相关。我们还证明了氢和碳键合(在没有多碘化物时占主导)影响内球碲碘键合和八面体对称性的能力。