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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Isomorphous substitution of transition-metal ions in the nanoporous nickel phosphate VSB-5
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Isomorphous substitution of transition-metal ions in the nanoporous nickel phosphate VSB-5

机译:纳米多孔磷酸镍VSB-5中过渡金属离子的同晶取代

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The transition-metal-incorporated nickel phosphate molecular sieves (TMI-VSB-5) have been hydrothermally synthesized at 453 K in weak basic conditions under microwave irradiation. By means of X-ray diffraction. inductively coupled plasma (ICP), ultraviolet-visible? (UV-vis) diffuse reflectance, and Mossbauer spectroscopies, successful isomorphous (at least partial) substitution of transition-metal ions in the VSB-5 framework has been verified. Characterization results show that the framework structure of nanoporous VSB-5 can accommodate a substantial level of isomorphous substitution of transition-metal ions up to about 10.5. and 3 atom % for Fe. Mn, and V, respectively. in both octahedral nickel sites (Mn and Fe) and tetrahedral phosphorus sites (V). The isomorphous substitution including the, replacement mechanism was studied by not only the change of unit cell parameters but also spectroscopic analysis. The unit cell parameters of TMI-VSB-5 including a unit cell volume and a-axis length relied oil the, ionic radii difference between the incorporated ion and the original framework ions such as Ni or P (R-TMI - R-Ni or R-TMI - R-P).
机译:掺有过渡金属的磷酸镍镍分子筛(TMI-VSB-5)在弱碱性条件下于微波辐射下于453 K水热合成。通过X射线衍射。电感耦合等离子体(ICP),紫外可见? (UV-vis)漫反射率和Mossbauer光谱学,已验证了VSB-5框架中过渡金属离子的成功同构(至少部分)替代。表征结果表明,纳米多孔VSB-5的骨架结构可以适应过渡金属离子的同构取代,直至大约10.5。和3原子%的铁。 Mn和V分别。在八面体镍位点(Mn和Fe)和四面体磷位点(V)都存在。不仅通过改变晶胞参数,而且通过光谱分析研究了包括置换机理的同构取代。 TMI-VSB-5的晶胞参数包括晶胞体积和a轴长度取决于所掺入的离子与原始构架离子(例如Ni或P)之间的离子半径差(R-TMI-R-Ni或R-TMI-RP)。

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