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Effect of variation of NiO on properties of NiO/GDC (gadolinium doped ceria) nano-composites

机译:NiO的变化对NiO / GDC(ga掺杂二氧化铈)纳米复合材料性能的影响

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In the present work, systematic study of series of NiO_xGDC_(1-x) where x = 0.1-0.6;;has been reported for the first time. For the synthesis of homogeneous NiO-GDC nanocomposite powders, the nano-powders of NiO and Ce_(0.9)Gd_(0.1)O_(1.95) (GDCIO) synthesized by solution combustion synthesis were mixed in mol % proportion. NiO-GDC nanocomposite can be reduced in situ to form Ni-GDC cermet anode. Hence the Ni-GDC cermet anode combines the catalytic activity and high electronic conduction property of Ni and ionic conductivity of GDC. Nano-crystalline constituents in the NiO-GDC nano composite are believed to give better anodic performance than microcrystalline constituents. Hence the efficient study of the atomistic structure and the accurate characterization of the structural parameters, such as crystallite size and internal strains, are of considerable interest. Therefore the NiO_xGDC10_(1-x) nanocomposite powders were characterized by XRD and FTIR spectroscopy. Further these powders were pelletized, sintered and characterized by FE-SEM and d.c. conductivity.
机译:在本工作中,首次报道了NiO_xGDC_(1-x)的系统研究,其中x = 0.1-0.6 ;;。为了合成均匀的NiO-GDC纳米复合粉末,将以溶液燃烧合成法合成的NiO和Ce_(0.9)Gd_(0.1)O_(1.95)(GDCIO)的纳米粉末以摩尔%的比例混合。 NiO-GDC纳米复合材料可以原位还原以形成Ni-GDC金属陶瓷阳极。因此,Ni-GDC金属陶瓷阳极兼具Ni的催化活性和高电子传导性能以及GDC的离子电导率。据信,NiO-GDC纳米复合材料中的纳米晶成分比微晶成分具有更好的阳极性能。因此,对原子结构的有效研究和对结构参数(如微晶尺寸和内部应变)的准确表征非常感兴趣。因此,通过XRD和FTIR光谱对NiO_xGDC10_(1-x)纳米复合粉末进行了表征。进一步将这些粉末造粒,烧结并通过FE-SEM和d.c进行表征。电导率。

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