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Synthesis and Characterization of Redox-Active Charge-Transfer Complexes with 2356-Tetracyanopyridine (TCNPy) for the Photogeneration of Pyridinium Radicals

机译:2356-四氰基吡啶(TCNPy)的氧化还原活性电荷转移配合物用于吡啶自由基的光生化

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摘要

The heteroaromatic polynitrile compound tetracyanopyridine (TCNPy) is introduced as a new electron acceptor for the formation of deeply colored charge-transfer complexes. In MeCN, TCNPy is characterized by a quasireversible one-electron-reduction process at −0.51 V (versus SCE). The tetracyanopyridine radical anion undergoes a secondary chemical reaction, which is assigned to a protonation step. TCNPy has been demonstrated to generate 1:1 complexes with various electron donors, including tetrathiafulvalene (TTF) and dihydroxybenzene derivatives, such as p-hydroquinone and catechol. Visible- or NIR-light-induced excitation of the intense charge-transfer bands of these compounds leads to a direct optical electron-transfer process for the formation of the corresponding radical-ion pairs. The presence of available electron donors that contain protic groups in close proximity to the TCNPy acceptor site opens up a new strategy for the photocontrolled generation of pyridinium radicals in a stepwise proton-coupled electron-transfer (PCET) sequence.
机译:杂芳族多腈化合物四氰基吡啶(TCNPy)被引入作为一种新的电子受体,用于形成深色电荷转移络合物。在MeCN中,TCNPy的特征是在-0.51 V(相对于SCE)下可逆的单电子还原过程。四氰基吡啶自由基阴离子经历第二化学反应,该反应被指定为质子化步骤。已证明TCNPy与各种电子给体(包括四硫富瓦烯(TTF)和二羟基苯衍生物,如对氢醌和邻苯二酚)生成1:1配合物。这些化合物的强电荷转移带的可见或近红外激发引起了直接光学电子转移过程,用于形成相应的自由基离子对。包含接近TCNPy受体位点的质子基团的可用电子供体的存在,开辟了一种新的策略,可以逐步控制质子偶联电子转移(PCET)序列产生吡啶鎓自由基。

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