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Radical theory of hydride atomization confirmed after four decades – determination of H radicals in a quartz hydride atomizer by two-photon absorption laser-induced fluorescence

机译:氢化物雾化的自由基理论在四十年后得到证实–通过两光子吸收激光诱导的荧光测定石英氢化物雾化器中的H自由基

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摘要

In an externally heated quartz atomizer, the most often used hydride atomizer for atomic absorption spectrometry, two-photon absorption laser-induced fluorescence (TALIF) was employed (i) to bring after four decades for the first time conclusive proof of the existence of H radical population sufficient to atomize hydrides thus confirming unambiguously the radical theory of hydride atomization and (ii) to determine the distribution of H radicals in the atomizer. Under typical operating conditions, H radicals are concentrated in an approximately 3 mm long cloud in the center of the optical arm and their peak concentration exceeds 1022 m–3, i.e. four orders of magnitude above the typical analytical concentration of hydride. The lowest detectable H radical concentration is in the order of 1019 m–3. The superb power of TALIF to determine the spatial distribution of H radicals in hydride atomizers for atomic absorption/fluorescence provides a route for elegant optimization of hydride atomization – just by establishing how the atomizer design and parameters influence the distribution of H radicals.
机译:在外部加热的石英雾化器(原子吸收光谱法中最常用的氢化物雾化器)中,采用了两光子吸收激光诱导的荧光(TALIF)(i)经过四十年的首次证实,氢的存在足以使氢化物雾化的自由基总数,从而明确确认了氢化物雾化的自由基理论,以及(ii)确定雾化器中H自由基的分布。在典型的工作条件下,H自由基集中在光学臂中央大约3 mm长的云中,其峰值浓度超过10 22 m –3 ,即四个比氢化物的典型分析浓度高几个数量级。最低可检测到的H自由基浓度为10 19 m –3 。 TALIF能够确定氢化物雾化器中H自由基在原子吸收/荧光方面的空间分布的超强能力,为氢化物雾化的优雅优化提供了一条途径-仅通过确定雾化器的设计和参数如何影响H自由基的分布即可。

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