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New gasochromic system: nanoparticles in liquid

机译:新的气致变色系统:液体中的纳米颗粒

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In this study, WO3 nanocrystallites were first produced by laser ablation of W target in deionised water. To synthesize palladium, a PdCl2 solution (0.2 g/L) was added to the liquid. Transmission electron microscope revealed successful synthesis of tungsten oxide nanocrystallites along with the production of Pd and core–shell Pd/WO3 nanoparticles. Gasochromic behavior was examined by hydrogen bubbling into Pd/WO3 liquid in which a transition to blue absorbing state was observed. Optical absorption spectra of the colored liquid represented different sharp small polaron absorbing peaks below 3 eV and the peaks intensity was observed to be varied with Pd:WO3 ratio. Time variations of optical density difference (∆OD) were measured at constant wavelength of 632.8 nm by alternative bubbling hydrogen or oxygen gases. The ∆OD in the first coloring cycles were not completely reversible owing to the presence of some unreacted PdCl2. The further coloring bleaching indicates a normal gasochromic behavior.
机译:在这项研究中,WO 3 纳米晶体首先是通过在去离子水中激光烧蚀钨靶制备的。为了合成钯,将PdCl 2 溶液(0.2 g / L)添加到液体中。透射电子显微镜显示成功合成了氧化钨纳米微晶,并生成了Pd和核壳型Pd / WO 3 纳米颗粒。通过将氢鼓泡到Pd / WO 3 液体中检查了气致变色行为,在该液体中观察到了向蓝色吸收态的转变。在3eV以下,有色液体的光吸收光谱表现出不同的尖锐的小极化子吸收峰,并且观察到峰强度随Pd:WO 3 比而变化。通过交替吹入氢气或氧气,在632.8 nm的恒定波长下测量了光密度差(ΔOD)的时间变化。由于存在一些未反应的PdCl 2 ,第一个显色循环中的OD值不是完全可逆的。进一步的颜色漂白表明正常的气致变色行为。

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