Al-Heniti Saleh, Umar Ahmad
Physics Department, Faculty of Sciences, King Abdulaziz University, Jeddah, Kingdom of Saudi Arabia.
J Nanosci Nanotechnol. 2013 Jan;13(1):86-90. doi: 10.1166/jnn.2013.7099.
In this work, well-crystallized urchin-shaped ZnO structures were synthesized on silicon substrate by simple non-catalytic thermal evaporation process by using metallic zinc powder in the presence of oxygen as source materials for zinc and oxygen, respectively. The synthesized ZnO structures were characterized in detail in terms of their morphological, structural, optical and field emission properties. The detailed morphological investigations revealed that the synthesized structures possess urchin-shape and grown in high-density over the substrate surface. The detailed structural and optical characterizations revealed that the synthesized urchin-shaped ZnO structures are well-crystallized and exhibiting good optical properties. The field emission analysis for urchin-shaped ZnO structures exhibits a turn-on field of 4.6 V/microm. The emission current density reached to 0.056 mA/cm2 at an applied electrical field of 6.4 V/microm and shows no saturation. The calculated field enhancement factor 'beta', from the F-N plot, was found to be approximately 2.2 x 10(3).
在本工作中,通过简单的非催化热蒸发工艺,以金属锌粉为锌源、氧气为氧源,在硅衬底上合成了结晶良好的海胆状氧化锌结构。对合成的氧化锌结构的形貌、结构、光学和场发射特性进行了详细表征。详细的形貌研究表明,合成的结构呈海胆状,在衬底表面高密度生长。详细的结构和光学表征表明,合成的海胆状氧化锌结构结晶良好,具有良好的光学性能。海胆状氧化锌结构的场发射分析显示开启场为4.6 V/μm。在6.4 V/μm的外加电场下,发射电流密度达到0.056 mA/cm²,且未出现饱和现象。从F-N图计算得到的场增强因子“β”约为2.2×10³。