Facile synthesis and electron transport properties of NiO nanostructures investigated by scanning tunneling microscopy

作者:Mallick Govind*; Labh Jyotsna; Giri Lily; Pandey Avinash C; Karna Shashi P
来源:AIP Advances, 2017, 7(8): 085007.
DOI:10.1063/1.4989977

摘要

Due to their unique chemical, thermal, electronic and photonic properties, low dimensional transition metal oxides, especially NiO, have attracted great deal of attention for potential applications in a wide range of technologies, such as, sensors, electrochromic coatings and self-healing materials. However, their synthesis involves multi-step complex procedures that in addition to being expensive, further introduce impurities. Here we present a low cost facile approach to synthesize uniform size NiO nanoparticles (NPs) from hydrothermally grown Ni(OH)(2). Detailed transmission electron microscopic analysis reveal the average size of NiO NPs to be around 29 nm. The dimension of NiO NP is also corroborated by the small area scanning tunneling microscope (STM) measurements. Further, we investigate electron transport characteristics of newly synthesized Ni(OH)(2) and NiO nanoparticles on p-type Si substrate using scanning tunneling microscopy. The conductivity of Ni(OH)(2) and NiO are determined to be 1.46x10(-3) S/cm and 2.37x10(-5) S/cm, respectively. The NiO NPs exhibit a lower voltage window (similar to 0.7 V) electron tunneling than the parent Ni(OH)(2).

  • 出版日期2017-8