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Extreme UV induced dissociation of amorphous solid water and crystalline water bilayers on Ru(0001)

机译:极紫外光诱导Ru(0001)上的非晶态固体水和结晶水双层解离

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The extreme ultraviolet (EUV, lambda = 13.5 nm) induced dissociation of water layers on Ru(0001) was investigated. We irradiated amorphous and crystalline water layers on a Ru crystal with EUV light, and measured the surface coverage of remaining water and oxygen as a function of radiation dose by temperature programmed desorption (TPD). The main reaction products are OH and H with a fraction of oxygen from fully dissociated water. TPD spectra from a series of exposures reveal that EUV promotes formation of the partially dissociated water overlayer on Ru. Furthermore, loss of water due to desorption and dissociation is also observed. The water loss cross sections for amorphous and crystalline water are measured at 9 +/- 2 x 10(-19) cm(2) and 5 +/- 1 x 10(-19) cm(2), respectively. Comparison between the two cross sections suggests that crystalline water is more stable against EUV induced desorption/dissociation. The dissociation products can oxidize the Ru surface. For this early stage of oxidation, we measured a smaller (compared to water loss) cross section at 2 x 10(-20) cm(2), which is 2 orders of magnitude smaller than the photon absorption cross section (at 92 eV) of gas phase water. The secondary electron (SE) contributions to the cross sections are also estimated. From our estimation, SE only forms a small part (20-25%) of the observed photon cross section. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了极紫外光(EUV,λ= 13.5 nm)引起Ru(0001)上水层的离解。我们用EUV光在Ru晶体上照射了非晶和结晶水层,并通过程序升温脱附(TPD)测量了残留水和氧气的表面覆盖率与辐射剂量的关系。主要反应产物是OH和H,以及完全分解的水中有一部分氧气。来自一系列暴露的TPD光谱表明,EUV促进了Ru上部分解离的水覆盖层的形成。此外,还观察到由于解吸和解离而导致的水损失。分别在9 +/- 2 x 10(-19)cm(2)和5 +/- 1 x 10(-19)cm(2)处测量无定形和结晶水的失水截面。两个横截面之间的比较表明,结晶水对EUV诱导的解吸/解离更稳定。离解产物可以氧化Ru表面。对于此氧化的早期阶段,我们在2 x 10(-20)cm(2)处测量了较小的横截面(与水损失相比),比光子吸收横截面(在92 eV处)小2个数量级。气相水。还估计了二次电子(SE)对横截面的贡献。根据我们的估计,SE仅占观察到的光子横截面的一小部分(20-25%)。 (C)2015 Elsevier B.V.保留所有权利。

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