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Imaging studies of the photochemistry of stratospheric bromine and chlorine compounds.

机译:平流层溴和氯化合物的光化学成像研究。

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This dissertation focuses on the photodissociation dynamics of stratospheric bromine and chlorine radical intermediates (BrO, ClO) along with reservoir species (ClONO2), which are known to play an important role at stratospheric ozone depletion.; The experiments were carried out using a newly built velocity-map ion imaging apparatus which is an improvement over traditional translational spectroscopy studying photodissociation dynamics. The apparatus combines a collision-free molecular beam source with a laser-based pump-probe technique; i.e., single state pumping followed by a state-selective resonantly enhanced multiphoton ionization. Intense molecular beams were prepared using a custom-built flash pyrolytic source.; The current research involves the development of fundamental properties of target species such as bond enthalpies and heats of formation, the chemical identification of photofragments, and their relative branching ratios, the excited states dynamics that lead to final products, partitioning of the available energy and finally the wavelength dependence of all these properties.
机译:本文着重研究平流层溴和氯自由基中间体(BrO,ClO)以及储层物种(ClONO2)的光解离动力学,已知它们在平流层臭氧消耗中起重要作用。实验是使用新型的速度图离子成像设备进行的,该设备是对研究光解离动力学的传统平移光谱学的改进。该设备结合了无碰撞分子束源和基于激光的泵浦探测技术;即单状态泵浦,然后进行状态选择共振增强的多光子电离。使用定制的快速热解源制备强分子束。当前的研究涉及目标物种的基本性质的发展,例如键焓和形成热,光碎片的化学鉴定及其相对支化比,导致最终产物的激发态动力学,可用能量的分配以及最终所有这些特性的波长依赖性。

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