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Three-dimensional flexible ceramics based on interconnected network of highly porous pure and metal alloyed ZnO tetrapods

机译:基于高度多孔的纯金属和金属合金化的ZnO四脚架互连网络的三维柔性陶瓷

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摘要

Flexible and porous three-dimensional (3-D) ceramics made from inorganic metal oxide nano- and micro-structures are going to be material candidates for future nanotechnologies. In the present work an attempt in this direction is demonstrated, where 3-D interconnected networks based on pure and metal (M)-alloyed ZnO nano- and micro-scale tetrapods (ZnO-T) have been synthesized via a versatile flame transport synthesis green route. The morphological evolutions of such networks have been investigated by scanning electron microscopy. Growth behavior of 3-D networks under different experimental conditions has been discussed. These ZnO-T networks were alloyed with different metals (Al, Cu, Sn, etc.) and accordingly characterized in detail for various properties. X-ray diffraction studies confirmed the crystal structure of such 3-D ZnO interconnected networks. The porosity of these interconnected 3D networks was tuned by controlling the initial tetrapods concentrations and M-alloying level, thus metal doped highly porous networks (up to 98%) have been synthesized. Electrical conductivity and mechanical strength of these networks were measured, as well as the correlation between porosity and alloying has been established. The properties of the pure and M -alloyed ZnO-T based flexible 3-D ceramic networks could be suitable for diverse utilizations in synthesizing new varieties of nano- and micro-scale 3-D materials and multifunctional practical applications. (C) 2016 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:由无机金属氧化物纳米结构和微结构制成的柔性且多孔的三维(3-D)陶瓷将成为未来纳米技术的候选材料。在本工作中,已经证明了朝这个方向的尝试,其中通过通用的火焰传输合成方法,合成了基于纯金属和金属(M)的ZnO纳米和微米级四脚架(ZnO-T)的3-D互连网络绿色路线。通过扫描电子显微镜已经研究了这种网络的形态演变。讨论了3-D网络在不同实验条件下的生长行为。这些ZnO-T网络与不同的金属(Al,Cu,Sn等)形成合金,因此针对各种特性进行了详细表征。 X射线衍射研究证实了这种3-D ZnO互连网络的晶体结构。这些相互连接的3D网络的孔隙度通过控制初始四脚架的浓度和M合金化程度进行了调整,因此已合成了金属掺杂的高度多孔的网络(高达98%)。测量了这些网络的电导率和机械强度,并确定了孔隙率与合金化之间的关系。基于纯金属和M合金的ZnO-T柔性3-D陶瓷网络的特性可能适合多种用途,用于合成纳米和微米级3-D材料的新品种以及多功能的实际应用。 (C)2016 Elsevier Ltd和Techna Group S.r.l.版权所有。

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