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Release behavior of hydrogen isotopes thermally absorbed in lithium niobate

机译:铌酸锂中热吸收的氢同位素的释放行为

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To elucidate the release behavior of hydrogen isotopes from ternary lithium oxides, thermal desorption spectroscopy and infrared absorption spectroscopy were conducted with LiNbC>3, in which deuterium had been absorbed by heating at 1073K in D_2Ovapor at 100 Pa. The release behavior was simulated based on a diffusion model. Characteristic deuterium releases of three types were found: (1) release by isotope exchange reaction of surface -OD~- with a H_2 or H_2O molecule in the atmosphere, (2) release as HDO by recombination with surface hydroxyls (-OD~- and -OH~-) on the surface, and (3) release as HDO or D_2O by recombination with surface hydroxyls from the bulk at high temperatures. Release (1) occurred at room temperature, but release (2) occurred at about 600 K. The temperature range at which release (3) takes place depends on the diffusion path length: the plate specimen thickness and the grain specimen size.
机译:为了阐明三价氧化锂中氢同位素的释放行为,采用LiNbC> 3进行了热解吸光谱和红外吸收光谱,其中氘在100Pa的D_2O气中通过在1073K加热而吸收了氘。扩散模型。发现了三种类型的特征性氘释放:(1)通过表面-OD〜-与大气中的H_2或H_2O分子的同位素交换反应释放;(2)通过与表面羟基(-OD〜-和-OH〜-)在表面上,和(3)通过与高温下本体的表面羟基复合而以HDO或D_2O形式释放。释放(1)在室温下发生,但是释放(2)在约600 K下发生。发生释放(3)的温度范围取决于扩散路径的长度:板样品厚度和晶粒样品尺寸。

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