首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Steric Engineering of Cyclometalated Pt(II) Complexes toward High-Contrast Monomer-Excimer-Based Mechanochromic and Vapochromic Luminescence
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Steric Engineering of Cyclometalated Pt(II) Complexes toward High-Contrast Monomer-Excimer-Based Mechanochromic and Vapochromic Luminescence

机译:环状级级Pt(II)络合物对基于高造影单体 - 准分基的机械光学变色和VapoMoMic发光的空间工程

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Ligands play a crucial role in the supramolecular photoluminescence properties of Pt(II) square-planar complexes. To improve the luminescence color responses of N<^>C<^>N cyclometalated Pt(II) complexes to external stimuli such as mechanical stress and chemical vapors, we have conducted a steric engineering of the previous systems 1a-1d [Inorg. Chem. 2017, 56, 4978-4989] by introducing two tert-butyl groups to the tridentate ligand to form complexes 2a-2c. Unlike the "too low" or "too high" steric hindrance of the NCNPt core in 1a-1d, the combined steric effects of the tert-butyl groups at one side and the pentiptycene group at the other side of the NCNPt core in 2b are "just right" for generating as-prepared powders with pure monomer (green) emission or pure excimer (red) emission, depending on the rate of precipitation from solutions. The synergistic steric effects are also beneficial to the solid-state luminescence quantum efficiency (30-36%). As a result of the differences in steric interactions and thus in the relative monomer vs excimer emission intensity, each complex of 2a-2c performs a two-step luminescence mechanochromism and vapochromism with different color patterns. This work provides an intriguing example of steric engineering of Pt(II) complexes toward highly emissive molecular solids with high-contrast mechanochromic and vapochromic luminescence.
机译:配体在Pt(ii)平方平面复合物的超分子光致发光性质中起重要作用。为了改善N℃的发光颜色响应N <^ ^ ^ ^ =与外部刺激等机械应力和化学蒸气的络合物,我们已经进行了先前的系统1a-1d [inorg。化学。 2017,56,4978-4989]通过将两个叔丁基引入三叉子配体中以形成复合物2a-2c。与在1A-1D中的NCNPT核心的“过低”或“太高”空间障碍不同,在2B中,在NCNPT核的另一侧的一侧和五庚烯基团的组合空间效应根据来自溶液的降水速率,“恰到好处”,用于产生具有纯单体(绿色)发射或纯准分子(红色)发射的纯单体(绿色)发射或纯的准分子发射。协同空间效应也有利于固态发光量子效率(30-36%)。由于空间相互作用的差异,因此在相对单体与准分子发射强度的结果中,2A-2C的每个络合物用不同的颜色图案来执行两步发光力学光学变性和Vapoformism。该作品提供了具有高对比度机械光学和VapOOMIC发光的高发光分子固体的Pt(II)复合物的诱人实例。

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