作者: Ruiyang Miao , Wen Zeng , Qi Gao
DOI: 10.1016/J.MATLET.2016.09.127
关键词: Hydrothermal circulation 、 Nanostructure 、 Magazine 、 Non-blocking I/O 、 Nanoflower 、 Science, technology and society 、 Chemical engineering 、 Materials science 、 Hydrothermal synthesis 、 Nanotechnology 、 Debye length 、 Mechanical engineering 、 General Materials Science 、 Mechanics of Materials 、 Condensed matter physics
摘要: Abstract Novel sparse-type and close-type NiO nanoflowers have been controllably synthesized via hydrothermal process assisted with CTAB SDS, respectively. The sensing performance of the was superior to other, which benefits from following factors: In nanoflower, (1) architecture is more porous closer; (2) nanojunctions between adjacent nanosheets are formed; (3) abundant micro reaction rooms assembled by nanosheets; (4) thickness much smaller than twice Debye length.