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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Direct Measurement of Singlet-Triplet Splitting within Rodlike Photogenerated Radical Ion Pairs Using Magnetic Field Effects: Estimation of the Electronic Coupling for Charge Recombination
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Direct Measurement of Singlet-Triplet Splitting within Rodlike Photogenerated Radical Ion Pairs Using Magnetic Field Effects: Estimation of the Electronic Coupling for Charge Recombination

机译:使用磁场效应直接测量棒状光生自由基对中的单重态-三重态分裂:电荷耦合的电子耦合估计

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Determining the electronic coupling matrix element, V, for an electron transfer reaction is challenging both experimentally and theoretically. The magnitude of the singlet-triplet splitting (spin-spin exchange interaction), 2J, within a radical ion pair (RP) is directly related to the sum of the squares of the matrix elements that couple the RP state to the ground state and to other energetically proximate excited and ionic states. Each term in this sum is weighted by the reciprocal of the energy gap between the RP state and the particular state to which it is coupled. We present here a series of intramolecular triads with linear, rodlike structures that undergo very efficient two-step electron transfer following direct excitation of a 4-(N-piperidinyl)naphthalene-1,8-dicarboximide (6ANI) chromophore. Attachment of a p-methoxyaniline (MeOAn) donor by means of the piperazine bridge and naphthalene-1,8:4,5-bis(dicarboximide) (NI) or pyromellitimide (PI) acceptors, either directly or through a 2,5-dimethylphenyl (Me_2Ph) spacer to 6ANI results in the triads MeOAn-6ANI-NI, MeOAn-6ANI-PI, MeOAn-6ANI-Me_2Ph-NI, and MeOAn-6ANI-Me_2Ph-PI. The two-step charge separation from the lowest excited singlet state of 6ANI yields singlet radical ion pairs in which the charges are separated by 14 to 19 A and whose lifetimes range from about 15 to 200 ns. These lifetimes are long enough such that radical pair intersystem crossing occurs to form the triplet radical ion pair, which then recombines to form the ground state and a neutral excited triplet state, which is localized either on 6ANI or NI. The yield of this locally excited triplet state, monitored by nanosecond transient absorption as a function of applied magnetic field strength, exhibits distinct resonances that directly yield 2J. The value of 2J is used to estimate V_(CR) for charge recombination of the radical ion pair. These measurements provide a highly sensitive method of determining the dependence of the electronic coupling on the structure of the radical ion pair.
机译:确定电子转移反应的电子耦合矩阵元素V在实验和理论上都具有挑战性。自由基离子对(RP)内的单重态-三重态分裂(自旋-自旋交换相互作用)2J的大小与将RP状态耦合到基态的矩阵元素的平方和直接相关。其他在能量上接近激发态和离子态的物质。该总和中的每个项都通过RP状态与耦合状态之间的能隙的倒数来加权。我们在这里介绍一系列具有线性,棒状结构的分子内三单元组,它们在直接激发4-(N-哌啶基)萘-1,8-二甲酰亚胺(6ANI)生色团后经历非常有效的两步电子转移。对-甲氧基苯胺(MeOAn)供体通过哌嗪桥和萘1,8:4,5-双(二甲叉酰亚胺)(NI)或均苯四甲酰亚胺(PI)受体直接或通过2,5-与6ANI的二甲基苯基(Me_2Ph)间隔基产生三联体MeOAn-6ANI-NI,MeOAn-6ANI-PI,MeOAn-6ANI-Me_2Ph-NI和MeOAn-6ANI-Me_2Ph-PI。从6ANI的最低激发单峰态进行两步电荷分离,会产生单线态自由基离子对,其中的电荷间隔为14至19 A,寿命在15到200 ns之间。这些寿命足够长,以至于发生自由基对的系统间交叉以形成三重态自由基离子对,然后再重组形成基态和中性激发的三重态,后者位于6ANI或NI上。通过纳秒瞬态吸收作为施加的磁场强度的函数来监视的这种局部激发的三重态的屈服表现出直接产生2J的独特共振。 2J的值用于估计自由基离子对的电荷复合的V_(CR)。这些测量提供了一种高度灵敏的方法,用于确定电子耦合对自由基离子对结构的依赖性。

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