首页> 外文会议>NATO Advanced Study Institute on Polyoxometalate Molecular Science Aug 25-Sep 4, 2001 Tenerife, Spain >TIME-RESOLVED ELECTRON SPIN RESONANCE SPECTROSCOPY OF PHOTOREDOX REACTIONS OF POLYOXOMETALATES: FORMATION OF PARAMAGNETIC-SPECIES PAIR BY TRIPLET MECHANISM
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TIME-RESOLVED ELECTRON SPIN RESONANCE SPECTROSCOPY OF PHOTOREDOX REACTIONS OF POLYOXOMETALATES: FORMATION OF PARAMAGNETIC-SPECIES PAIR BY TRIPLET MECHANISM

机译:聚乳酸的光致氧化反应的时间分辨电子自旋共振谱:三重峰机理形成的顺磁性物种对。

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Continuous-wave time-resolved electron spin resonance (TRESR) spectroscopy has been successfully employed to elucidate photochemical reaction mechanisms, since chemically induced dynamic electron polarization (CIDEP) spectra observed give information about the spin dynamics of short-lived intermediates such as radical pairs (RPs) and free radicals (FRs). CIDEP spectra were usually interpreted by two main mechanisms: triplet mechanism (TM) and radical pair mechanism (RPM). In the TM, electron spin polarization (ESP), which existed in the excited triplet state, is transferred to each of the radicals created on its reaction. The intersystem crossing (ISC) process is usually spin-selective and produces the excited triplet state with a non-equilibrated population in the spin sublevels, spin polarized triplet state. When a reaction occurs from such a polarized triplet state before the relaxation,' spin-polarized radicals are produced, generating net polarized CIDEP spectra. In this paper we describe CIDEP phenomena for the photoredox reaction between the polyoxometalate (POM) and both electron- and proton-donor (DH), which allows us to detect large emissive ESP of deproto-nated one-electron oxidized species (D·) generated by the electron transfer (with an accompanying transfer of proton) from DH to the oxygen-to-metal charge transfer (O→M LMCT) excited triplet states of POM (~3(O→M LMCT)), and to investigate the primary processes of the solution chemistry of POM. If the photoredox reaction between POM and DH occurs rapidly via ~3(O→M LMCT), ESP in the ~3(O→M LMCT) can be expected to be transferred to D· and /or POM-H (one-electron reduced protonated species of POM) to give rise to CIDER To be observed, the production of D· must rapidly take place before thermal equilibrium of the triplet spin-lattice relaxation of ~3(O→M LMCT) has been established. The TM seems to be common in the photoredox reactions of POMs which produce emissive ESP in elementary steps.
机译:连续波时间分辨电子自旋共振(TRESR)光谱已成功用于阐明光化学反应机理,因为观察到的化学诱导动态电子极化(CIDEP)光谱提供了有关短寿命中间体(如自由基对)的自旋动力学的信息( RPs)和自由基(FRs)。 CIDEP光谱通常由两种主要机理解释:三重态机理(TM)和自由基对机理(RPM)。在TM中,以激发三重态存在的电子自旋极化(ESP)转移到在其反应中产生的每个自由基上。系统间交叉(ISC)过程通常是自旋选择的,并在自旋子水平(自旋极化的三重态)中产生激发三重态,其激发态具有非平衡的总体。当在弛豫之前由于这种极化三重态发生反应时,会产生自旋极化自由基,从而产生净极化CIDEP光谱。在本文中,我们描述了多金属氧酸盐(POM)与电子给体和质子给体(DH)之间的光氧化还原反应的CIDEP现象,这使我们能够检测去质子化的单电子氧化物种(D·)的大发射ESP。由DH的电子转移(伴随质子转移)到氧-金属电荷转移(O→M LMCT)激发POM的三重态(〜3(O→M LMCT))产生的碳,并研究了POM溶液化学的主要过程。如果POM和DH之间的光氧化还原反应通过〜3(O→M LMCT)快速发生,则〜3(O→M LMCT)中的ESP有望转移至D·和/或POM-H(单电子)。观察到,在建立三重态自旋晶格弛豫约3(O→M LMCT)的热平衡之前,必须迅速发生D·的生成。 TM似乎在POM的光氧化还原反应中很常见,而POM在基本步骤中会产生发射ESP。

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