等结构
化学
四硫富瓦烯
微型多孔材料
价(化学)
密度泛函理论
离子半径
金属有机骨架
化学物理
原子轨道
离子
结晶学
计算化学
无机化学
凝聚态物理
晶体结构
物理化学
吸附
分子
有机化学
物理
量子力学
电子
作者
Sarah S. Park,Eric Hontz,Lei Sun,Christopher H. Hendon,Aron Walsh,Troy Van Voorhis,Mircea Dincă
摘要
Isostructural metal-organic frameworks (MOFs) M2(TTFTB) (M = Mn, Co, Zn, and Cd; H4TTFTB = tetrathiafulvalene tetrabenzoate) exhibit a striking correlation between their single-crystal conductivities and the shortest S···S interaction defined by neighboring TTF cores, which inversely correlates with the ionic radius of the metal ions. The larger cations cause a pinching of the S···S contact, which is responsible for better orbital overlap between pz orbitals on neighboring S and C atoms. Density functional theory calculations show that these orbitals are critically involved in the valence band of these materials, such that modulation of the S···S distance has an important effect on band dispersion and, implicitly, on the conductivity. The Cd analogue, with the largest cation and shortest S···S contact, shows the largest electrical conductivity, σ = 2.86 (±0.53) × 10(-4) S/cm, which is also among the highest in microporous MOFs. These results describe the first demonstration of tunable intrinsic electrical conductivity in this class of materials and serve as a blueprint for controlling charge transport in MOFs with π-stacked motifs.
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