首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Photosensitized generation of singlet oxygen from ruthenium(II) and osmium(II) bipyridyl complexes
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Photosensitized generation of singlet oxygen from ruthenium(II) and osmium(II) bipyridyl complexes

机译:从钌(II)和(II)联吡啶配合物光敏生成单线态氧

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摘要

Photophysical properties for a number ruthenium(II) and osmium(II) bipyridyl complexes are reported in dilute acetonitrile solution. The lifetimes of the excited metal to ligand charge transfer states (MLCT) of the osmium complexes are shorter than for the ruthenium complexes. Rate constants, kq, for quenching of the lowest excited metal to ligand charge transfer states by molecular oxygen are found to be in the range (1.1-7.7) * 10~9 dm~3 mol~(-1) s~(-1). Efficiencies of singlet oxygen production, fT, following oxygen quenching of the lowest excited states of these ruthenium and osmium complexes are in the range of 0.10-0.72, lower values being associated with those compounds having lower oxidation potentials. The rate constants for quenching of the excited MLCT states, k_q, are found to be generally higher for osmium complexes than for ruthenium complexes. Overall quenching rate constants, k_q were found to give an inverse correlation with the energy of the excited state being quenched, and also to correlate with the oxidation potentials of the complexes. However, when the contribution of quenching due exclusively to energy transfer to produce singlet oxygen, k_q~1, is considered, its dependence on the energy of the excited states is more complex. Rate constants for quenching due to energy dissipation of the excited MLCT states without energy transfer, kq3, were found to show a clear correlation with the oxidation potential of the complexes. Factors affecting both the mechanism of oxygen quenching of the excited states and the efficiency of singlet oxygen generation following this quenching are discussed. These factors include the oxidation potential, the energy of the lowest excited state of the complexes and spin-orbit coupling constant of the central metal.
机译:据报道,在稀乙腈溶液中,一些钌(II)和(II)联吡啶配合物的光物理性质。 excited络合物的激发金属到配体电荷转移态(MLCT)的寿命比钌络合物的寿命短。通过分子氧淬灭最低激发的金属到配体电荷转移态的速率常数kq在(1.1-7.7)* 10〜9 dm〜3 mol〜(-1)s〜(-1)范围内)。在这些钌和络合物的最低激发态进行氧淬灭后,单线态氧的产生效率fT在0.10-0.72的范围内,较低的值与那些具有较低氧化电位的化合物有关。发现对于for配合物而言,用于淬灭激发的MLCT态的速率常数k_q通常高于钌配合物。发现总的猝灭速率常数k_q与被猝灭的激发态的能量成反比,并且还与配合物的氧化电位相关。然而,当仅考虑由于能量转移产生单线态氧k_q〜1引起的猝灭贡献时,其对激发态能量的依赖性更加复杂。发现由于激发的MLCT态的能量消散而没有能量转移而导致的淬灭速率常数kq3与络合物的氧化电位有着明显的相关性。讨论了既影响激发态的氧猝灭机理又影响该猝灭后单线态氧产生效率的因素。这些因素包括氧化电位,配合物的最低激发态能量和中心金属的自旋轨道耦合常数。

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