光致变色
卤化物
环加成
光化学
材料科学
动能
金属
化学
光敏性
催化作用
高分子化学
可见光谱
金属卤化物
动力学
螺吡喃
无机化学
动力控制
反应机理
作者
XJ Huang,Chudong Chen,Chenghao Ye,Xianli Li,Yunyun Feng,Xinyang Chen,Ruosheng Zeng,Jin Z. Zhang,Qi Pang,Binbin Luo
标识
DOI:10.1021/acs.chemmater.6c01114
摘要
In this work, we tune the photomechanical and photochromic response in zero-dimensional halide perovskitoids (BM) 2 Sn 1– y Te y X 6 ·2H 2 O (BM = Brooker’s merocyanine; X = Cl, Br) by controlling cycloaddition reaction kinetics. By alloying the B-site with different ratios of Sn 4+ /Te 4+, the kinetics of the solid-state [2 + 2] cycloaddition reaction between BM cations are precisely modulated. Using the Johnson–Mehl–Avrami–Kolmogorov kinetic model, the rate constant of BM was determined with values increasing from 0.059 min –1 for (BM) 2 TeCl 6 ·2H 2 O ( BMTeCl ) to 0.129 min –1 for (BM) 2 SnCl 6 ·2H 2 O ( BMSnCl ) under 405 nm irradiation. The faster reaction kinetics results in a stronger photomechanical and photochromic response with shorter responsive time for BMSnCl . Spectroscopic studies and time-dependent density functional theory calculations reveal that the incorporation of Te 4+ with 5s 2 lone pair electrons allows the electronic transition 1 S 0 → 3 P x of Te 4+ and through-space charge transfer from [TeX 6 ] to BM. These transitions overlap well with the intramolecular charge transfer of BM → BM*, leading to competitive light absorption between BM and the [TeX 6 ] sublattice. Therefore, varying the Sn 4+ /Te 4+ ratio modulates the excited state population of BM and results in a Te-dependent photomechanical and photochromic response. This study highlights the potential of B-site alloying in MHPs as a powerful strategy for designing stimuli-responsive smart materials.
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