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Applications of in Situ Raman Spectroscopy for Identifying Nickel Hydroxide Materials and Surface Layers during Chemical Aging

机译:原位拉曼光谱在化学时效过程中鉴定氢氧化镍材料和表面层的应用

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The applications of in situ vibrational spectroscopy for identifying bulk and surface Ni(OH)2 are discussed. Raman spectra from α- and β-Ni(OH)2 samples immersed in water are generally similar to those collected from comparable dry samples. However, the Raman scattering intensities vary, and dry β-Ni(OH)2 additionally exhibits a surface O-H stretching mode at 3690 cm~(-1). Using in situ Raman spectroscopy, the spontaneous transformation of α-Ni(OH)2 to β-Ni(OH)2 in room-temperature water was monitored. Such transformations are conventionally performed in high-temperature alkaline media. An intralayer OH-diflusion model is proposed. Internal stresses at the α/β-phase boundary caused shifted peaks, higher order vibrational modes, and a new water peak at 3520 cm~(-1). We conclude that Raman spectroscopy may be applied to observe Ni(OH)2 materials in situ during chemical and electrochemical treatments. Such measurements provide information on the proportions of α- and β-Ni(OH)2 and their fine structural details with high sensitivity.
机译:讨论了原位振动光谱法在识别体积和表面Ni(OH)2方面的应用。来自浸入水中的α-和β-Ni(OH)2样品的拉曼光谱通常与从可比较的干燥样品中收集的拉曼光谱相似。然而,拉曼散射强度变化,并且干燥的β-Ni(OH)2在3690cm-1(-1)处另外表现出表面O-H拉伸模式。使用原位拉曼光谱,监测室温水中α-Ni(OH)2向β-Ni(OH)2的自发转化。此类转化通常在高温碱性介质中进行。提出了层内OH-扩散模型。 α/β相边界处的内应力导致峰位移,高阶振动模式和3520 cm〜(-1)处出现新的水峰。我们得出的结论是,拉曼光谱法可用于在化学和电化学处理过程中原位观察Ni(OH)2材料。这样的测量以高灵敏度提供了有关α-和β-Ni(OH)2的比例及其精细结构细节的信息。

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