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首页> 外文期刊>Catalysis Letters >Vibrational spectra and dissociation of aqueous Na2SiO3 solutions
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Vibrational spectra and dissociation of aqueous Na2SiO3 solutions

机译:Na2 SiO3 水溶液的振动光谱和解离

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To facilitate molecular spectroscopic observation of the mysterious transition of dissolved sodium silicate molecules into nanoparticles of desired silica gel and zeolite structures, the IR and Raman spectra of Na2H2SiO4 monomers are studied here in details. It is demonstrated that the 3–0.2 mol/L aqueous solutions of Na2SiO3 and Na2SiO3 × 9H2O contain mostly Na2H2SiO4 monomers dissociated about 30%–80%, respectively. In contrast to the common belief the Si–O vibrations of these monomers depend on their dissociation level generating FTIR and Raman bands which are frequently associated with polymer silica structures in the current literature. To stay consistent with the molweight and dissociation measurements, these vibrational assignments are revised in this paper. Some unique and unexpected effects of D2O used instead of H2O as solvent are also reported.
机译:为了方便分子光谱观察溶​​解的硅酸钠分子向所需硅胶和沸石结构的纳米粒子的神秘转变,本文研究了Na2 H2 SiO4 单体的IR和拉曼光谱。细节。结果表明,Na2 SiO3 和Na2 SiO3 ×9H2 O的3-0.2 mol / L水溶液中主要含有Na2 H2。 SiO4 单体分别解离约30%–80%。与通常的看法相反,这些单体的Si–O振动取决于它们的解离水平,从而产生FTIR和拉曼谱带,这在当前文献中经常与聚合物二氧化硅结构相关。为了与分子量和解离测量值保持一致,本文对这些振动分配进行了修订。还报道了使用D2 O代替H2 O作为溶剂的一些独特而出乎意料的效果。

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