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A luminescent organic radical with two pyridyl groups: high photostability and dual stimuli-responsive properties with theoretical analyses of photophysical processes

机译:具有两个吡啶基的发光有机基团:高光稳定性和双重刺激响应特性并对光物理过程进行了理论分析

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摘要

Luminescent monoradicals are expected to show unique properties based on their doublet state, where establishing a method to improve their photostability is an important issue for expanding their photofunctionality. We synthesized a highly photostable luminescent organic radical, the bis(3,5-dichloro-4-pyridyl)(2,4,6-trichlorophenyl)methyl radical (bisPyTM), containing two pyridyl groups on a tris(2,4,6-trichlorophenyl)methyl radical (TTM) skeleton. bisPyTM in dichloromethane exhibited fluorescence with an emission peak wavelength, λem, of 650 nm. We visually detected an emission (λem = 712 nm) from crystalline bisPyTM at 77 K, which is the first example of definite solid-state emission in a radical. Introducing the two nitrogen atoms into the TTM skeleton was shown to lower the energies of the frontier orbitals. The oscillator strength, f, of the electronic transition between the lowest excited state and the ground state, and the off-diagonal vibronic coupling constants (VCCs) were calculated theoretically for bisPyTM and the (3,5-dichloro-4-pyridyl)bis(2,4,6-trichlorophenyl)methyl radical (PyBTM). The calculated PyBTM to bisPyTM ratios for f or VCC agreed well with experimental radiative and non-radiative rate constants (kr and knr) ratios, respectively. This study shows that scaled kr and knr can be estimated and compared in this class of radicals using theoretical calculations, greatly advancing the prediction and design of their photofunctionality. The half-life of bisPyTM upon continuous UV light irradiation in dichloromethane was 47 or 3000 times longer those that of PyBTM (which contains one pyridyl group) and TTM (which has no pyridyl rings), respectively. The electrochemical and luminescent properties of bisPyTM were modulated in two stages using protons or B(C6F5)3.
机译:预期发光单基化合物会基于其双峰态显示出独特的特性,其中建立一种提高其光稳定性的方法是扩大其光功能性的重要问题。我们合成了高度光稳定的发光有机自由基,即双(3,5-二氯-4-吡啶基)(2,4,6-三氯苯基)甲基(bisPyTM),在tris(2,4,6上包含两个吡啶基-三氯苯基)甲基自由基(TTM)骨架。二氯甲烷中的bisPyTM发出的荧光的发射峰值波长λem为650 nm。我们在视觉上检测到晶体bisPyTM在77 K处的发射(λem= 712 nm),这是自由基中确定的固态发射的第一个示例。将两个氮原子引入TTM骨架可降低边界轨道的能量。理论上计算了bisPyTM和(3,5-dichloro-4-pyridyl)bis的最低激发态和基态之间的电子跃迁的振子强度f以及非对角线振动耦合常数(VCC) (2,4,6-三氯苯基)甲基(PyBTM)。计算出的f或VCC的PyBTM与bisPyTM之比分别与实验辐射率常数和非辐射率常数(kr和knr)之比非常吻合。这项研究表明,可以使用理论计算方法对此类自由基中的kr和knr比例进行估计和比较,从而大大促进了其光官能度的预测和设计。 bisPyTM在二氯甲烷中连续紫外线照射的半衰期分别是PyBTM(含一个吡啶基)和TTM(无吡啶环)的半衰期的47或3000倍。使用质子或B(C6F5)3分两个阶段调节bisPyTM的电化学和发光特性。

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