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甲苯基三联吡啶的N,N,N-和N,N,C-配位模式对环金属化钌(II)配合物光物理性质的影响:关于酸/碱依赖性可逆环金属化的实验与理论联合研究

Influences of Both N,N,N- and N,N,C-Coordination Modes of Tolyl-terpyridine on the Photophysical Properties of Cyclometalated Ru(II) Complexes: Combined Experimental and Theoretical Investigations on Acid/Base-Dependent Reversible Cyclometalation.

作者信息

Das Soumi, Pal Poulami, Ganguly Tanusree, Baitalik Sujoy

机构信息

Department of Chemistry, Inorganic Chemistry Section, Jadavpur University, Kolkata 700032, India.

School of Chemical Sciences, Indian Association for the Cultivation of Science, 2A & B Raja S C Mullick Road, Kolkata 700032, India.

出版信息

Inorg Chem. 2023 Aug 14;62(32):12872-12885. doi: 10.1021/acs.inorgchem.3c01523. Epub 2023 Jul 28.

Abstract

With the goal of developing a new strategy for the synthesis of luminescent Ru(II) complexes, we have prepared herein a new set of bis-tridentate complexes of the type [(py-bpy-Ph-X)Ru(tpy-PhCH)]ClO (X = -CH, -CHBr, and -CHO) incorporating both non-cyclometalated and cyclometalated coordination motifs of two isomeric forms of methylphenyl-terpyridine (tpy-PhCH). Thorough characterization of the synthesized complexes is carried out using standard analytical tools and single crystal X-ray diffraction. Detailed investigations on their photophysical and electrochemical behaviors are carried out in MeCN. The presence of a carbanionic center in the cyclometalating unit increases the absorption spectral window of the complexes into a longer-wavelength region. The complexes also exhibit room-temperature luminescence in the NIR domain with enhanced excited-state lifetimes (up to 20.1 ns) compared to their non-cyclometalated counterpart, [Ru(tpy-PhCH)]. In the presence of acid, the non-coordinated nitrogen atom in the secondary coordination sphere of the complexes allows fine-tuning of the absorption and emission spectral properties. Excess acid induces de-coordination of the Ru-C bond, which is signaled by a remarkable alteration of their spectral profiles. Cleavage of the Ru-C bond is also possible upon treating the acidified solution of the complexes with visible light. Restoration of the Ru-C bond is again feasible upon treating the solution with base at an elevated temperature (∼70 °C). In essence, "on-off" and "off-on" switching of emission is facilitated upon alternating treatment of the Ru(II) complexes with acid, base, and temperature. DFT and TD-DFT calculations are also performed for assignments of the spectral bands as well as to understand structural changes associated with the switching behaviors of the complexes.

摘要

为了开发一种合成发光钌(II)配合物的新策略,我们在此制备了一组新型的双三齿配合物[(py-bpy-Ph-X)Ru(tpy-PhCH)]ClO(X = -CH、-CHBr和-CHO),其中包含甲基苯基三联吡啶(tpy-PhCH)两种异构体形式的非环金属化和环金属化配位模式。使用标准分析工具和单晶X射线衍射对合成的配合物进行了全面表征。在乙腈中对其光物理和电化学行为进行了详细研究。环金属化单元中碳负离子中心的存在将配合物的吸收光谱窗口扩展到更长波长区域。与非环金属化的对应物[Ru(tpy-PhCH)]相比,这些配合物在近红外区域也表现出室温发光,激发态寿命延长(高达20.1 ns)。在酸存在下,配合物二级配位球中的非配位氮原子允许对吸收和发射光谱性质进行微调。过量的酸会导致Ru-C键去配位,这通过其光谱轮廓的显著变化得以体现。在用可见光处理配合物的酸化溶液时,Ru-C键也可能断裂。在高温(约70°C)下用碱处理溶液后,Ru-C键的恢复再次可行。本质上,在用酸、碱和温度交替处理钌(II)配合物时,促进了发射的“开-关”和“关-开”切换。还进行了密度泛函理论(DFT)和含时密度泛函理论(TD-DFT)计算,以确定光谱带并理解与配合物切换行为相关的结构变化。

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