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首页> 外文期刊>Journal of Solid State Chemistry >Selected-control hydrothermal synthesis and formation mechanism of 1D ammonium vanadate
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Selected-control hydrothermal synthesis and formation mechanism of 1D ammonium vanadate

机译:一维钒酸铵的选择性控制水热合成及形成机理

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Selective-controlled structure and shape of ammonium vanadate nanocrystals were successfully synthesized by a simple hydrothermal method without the presence of catalysts or templates. It was found that tuning the pH of the growth solution was a crucial step for the control of the phase-compositional, structure and morphology transformation. The final products were NH4V4O10 nanobelts, (NH4)(2)V6O16 center dot 1.5H(2)O nanowires, and (NH4)(6)V10O28 center dot 6H(2)O nanobundles, respectively, when the pH of the growth solution varied from 2.5 to 1.5, then to 0.5. The hydrogen bonding interaction and the surface free energies were responsible for the formation of the ammonium vanadates with the different structure and morphology. The conductivity measurements showed the one-dimensional (1D) ammonium vanadates were semiconductors at room temperature. The conductivity of ID ammonium vanadates varied from 1.95 x 10(-4) to 2.45 x 10(-3) Scm(-1) due to the different structures.
机译:通过简单的水热法成功地合成了钒酸铵纳米晶体的选择性控制结构和形状,而无需使用催化剂或模板。已经发现调节生长溶液的pH是控制相组成,结构和形态转变的关键步骤。当生长溶液的pH值分别为NH4V4O10纳米带,(NH4)(2)V6O16中心点1.5H(2)O纳米线和(NH4)(6)V10O28中心点6H(2)O纳米束时,最终产品分别为。从2.5到1.5,再到0.5。氢键相互作用和表面自由能是形成具有不同结构和形态的钒酸铵的原因。电导率测量表明,一维(1D)钒酸铵在室温下为半导体。钒酸铵ID的电导率因结构不同而从1.95 x 10(-4)到2.45 x 10(-3)Scm(-​​1)不等。

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