Anandha Babu G, Ravi G, Mahalingam T, Kumaresavanji M, Hayakawa Y
Department of Physics, Alagappa University, Karaikudi, Tamilnadu, India.
Dalton Trans. 2015 Mar 14;44(10):4485-97. doi: 10.1039/c4dt03483j.
Nanoflake-structured NiO were synthesized by a microwave assisted method without the use of additives. The cubic phase of NiO nanoparticles with increasing crystalline nature for higher microwave power is ascertained by X-ray diffraction studies. Previous reports revealed that hexagonally structured β-Ni(OH)2 was completely transferred into the cubic phase of NiO around 350 °C, confirmed by using thermal analysis (TG/DTA). In our present work, the size and morphology of nanoparticles are ascertained from transmission electron microscopy (TEM) analysis. Flake-like morphology with uniform size, shape and less agglomerated structure formation is obtained for 900 and 600 W of microwave power used for the synthesis of NiO samples. The effect of microwave power used for the synthesis of NiO nanoflakes was analyzed by studying the magnetic and electrochemical behavior of NiO nanoflakes. Room temperature magnetic measurements revealed the small ferromagnetic nature of NiO nanoparticles. It was observed that the samples synthesized at higher microwave power exhibited divergence behavior below 300 K in FC and ZFC measurements, which results superparamagnetic behavior. An enhanced supercapacitor performance with higher specific capacitance values was determined for NiO nanoflake samples synthesized at (25)600 W and 900 W of microwave power.
通过微波辅助法合成了无添加剂的纳米片状结构的NiO。通过X射线衍射研究确定了随着微波功率升高结晶性增强的立方相NiO纳米颗粒。先前的报道显示,通过热分析(TG/DTA)证实,六角形结构的β-Ni(OH)₂在350℃左右完全转变为NiO的立方相。在我们目前的工作中,通过透射电子显微镜(TEM)分析确定了纳米颗粒的尺寸和形态。对于用于合成NiO样品的900W和600W微波功率,获得了尺寸、形状均匀且团聚结构较少的片状形态。通过研究NiO纳米片的磁性和电化学行为,分析了用于合成NiO纳米片的微波功率的影响。室温磁性测量揭示了NiO纳米颗粒的小铁磁性质。观察到在较高微波功率下合成的样品在FC和ZFC测量中在300K以下表现出发散行为,这导致了超顺磁行为。对于在600W和900W微波功率下合成的NiO纳米片样品,确定了具有更高比电容值的增强型超级电容器性能。