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Photofragmentation of Gas-Phase Lanthanide CyclopentadienylComplexes: Experimental and Time-Dependent Excited-State MolecularDynamics

机译:气相镧系环戊二烯基的光致碎裂配合物:实验和时间相关的激发态分子动力学

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摘要

Unimolecular gas-phase laser-photodissociation reaction mechanisms of open-shell lanthanide cyclopentadienyl complexes, Ln(Cp)3 and Ln(TMCp)3, are analyzed from experimental and computational perspectives. The most probable pathways for the photoreactions are inferred from photoionization time-of-flight mass spectrometry (PI-TOF-MS), which provides the sequence of reaction intermediates and the distribution of final products. Time-dependent excited-state molecular dynamics (TDESMD) calculations provide insight into the electronic mechanisms for the individual steps of the laser-driven photoreactions for Ln(Cp)3. Computational analysis correctly predicts several key reaction products as well as the observed branching between two reaction pathways: (1) ligand ejection and (2) ligand cracking. Simulations support our previous assertion that both reaction pathways are initiated via a ligand-to-metal charge-transfer (LMCT) process. For the more complex chemistry of the tetramethylcyclopentadienyl complexes Ln(TMCp)3, TMESMD is less tractable, but computational geometry optimization reveals the structures of intermediates deduced from PI-TOF-MS, including several classic “tuck-in” structures and products of Cp ring expansion. The results have important implications for metal–organiccatalysis and laser-assisted metal–organic chemical vapor deposition(LCVD) of insulators with high dielectric constants.
机译:从实验和计算的角度分析了开壳镧系环戊二烯基配合物Ln(Cp)3和Ln(TMCp)3的单分子气相激光光解离反应机理。通过电离飞行时间质谱(PI-TOF-MS)可以推断出光反应的最可能途径,该途径提供了反应中间体的顺序和最终产物的分布。时间相关的激发态分子动力学(TDESMD)计算为Ln(Cp)3的激光驱动光反应的各个步骤的电子机理提供了见识。计算分析正确预测了几个关键反应产物以及两个反应路径之间观察到的分支:(1)配体射出和(2)配体裂化。模拟支持我们先前的论断,即两种反应途径都是通过配体-金属电荷转移(LMCT)过程引发的。对于四甲基环戊二烯基配合物Ln(TMCp)3的更复杂的化学反应,TMESMD较难处理,但计算几何优化表明,由PI-TOF-MS推导的中间体结构,包括几种经典的“插入”结构和Cp产物环膨胀。结果对金属有机物具有重要意义催化和激光辅助金属有机化学气相沉积(LCVD)具有高介电常数的绝缘子。

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