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Shape evolution and enhanced sensing and functionalization of RE-OH nanostructures

机译:Re-OH纳米结构的形状演​​化和增强的感测和功能化

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Rare earth hydroxides (R(OH)) were synthesized by Composite mediated hydrothermal (CMH) method, a facile technique to prepare functional materials, and stoichiometric change in composition and morphology was observed. Ce(OH)3, La(OH) and Nd(OH) were the synthesized samples. X-ray diffraction (XRD) confirmed the hexagonal structures of the prepared samples. The crystallite size corresponding to the most intense peaks were 18, 33 and 41 nm for Nd-, La- and Ce-hydroxides. SEM revealed very interesting and fascinating morphologies. Ce(OH) has belts like structures, Nd(OH) has needles like structures and La(OH) has wires like structures. The growth of structures can be ascribed to chemical potential, maintained through precipitating agent, the pressure inside the vessel, the temperature provided for the hydrothermal treatment and time for hydrothermal treatment time. The shape evolution can be explained by Gibbs-Curie-Wulff model which relate the shape evolution with the face energies. When the equilibrium energy is obtained for respective faces the Ostwald ripening is stopped. On heat treatment, the La(OH) first converted into LaOOH at ca. 400°C and finally into LaO at ca. 600°C as observed in DSC plot. The increase of conductivity with temperature is evident from the plots. Nd(OH) achieved maximum conductivity and Ce(OH) acquired minimum among the three possibly due to smaller crystallite sizes in the former case. The smaller grains increase the grain boundaries and charges can pile up on boundaries which increase the conductivity. The ac conductivity showed a direct dependence on frequency (1kHz-3MHz). The corresponding dc conductivity values of Ce(OH), La(OH) and Nd(OH) were 0.372, 6.648 and 20.369 S-cm, respectively. The interesting morphologies make these materials poten- ial candidates for sensing and functionalization.
机译:通过复合介导的水热(CMH)方法合成稀土氢氧化物(R(OH)),观察到制备功能材料的容易技术,以及组合物和形态的化学计量变化。 Ce(OH)3,La(OH)和Nd(OH)是合成样品。 X射线衍射(XRD)证实了制备样品的六边形结构。对应于最强烈峰的微晶尺寸为Nd-,La-和Ce-氢氧化物的18,33和41nm。 SEM揭示了非常有趣和迷人的形态。 CE(OH)具有像结构的皮带,ND(OH)具有像结构,LA(OH)的针具有像结构的电线。结构的生长可以归因于化学电位,通过沉淀剂维持,容器内的压力,为水热处理时间提供的温度和用于水热处理时间的时间。可以通过Gibbs-Curie-Wulff模型来解释形状的演化,其涉及面部能量的形状演变。当为相应的面部获得平衡能量时,停止骨瓦的成熟。在热处理中,La(OH)首先在CA转换成Laooh。 400°C,最后进入老挝。在DSC图中观察到600°C。从图中,温度的导电性的增加是明显的。 ND(OH)在前一种情况下较小的微晶尺寸,在三个可能中获得最大电导率和Ce(OH)最小。较小的晶粒增加了晶粒边界,电荷可以堆叠增加导电性的边界。交流电导率显示出对频率(1kHz-3MHz)的直接依赖性。 Ce(OH),La(OH)和Nd(OH)的相应DC电导率分别为0.372,6.648和20.369 s-cm。有趣的形态使这些材料具有传感和功能化的潜在候选者。

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