Salhi B, Hossain M K, Mukhaimer A W, Al-Sulaiman F A
1Center of Research Excellence in Renewable Energy (CoRERE), King Fahd University of Petroleum and Minerals (KFUPM), Dhahran, 31261 Kingdom of Saudi Arabia.
2Department of Mechanical Engineering, King Fahd University of Petroleum and Minerals (KFUPM), Dhahran, 31261 Kingdom of Saudi Arabia.
J Electroceram. 2016;37(1):34-49. doi: 10.1007/s10832-016-0037-y. Epub 2016 May 7.
The synthesis and the characterisation of silicon nanowires (SiNWs) have recently attracted great attention due to their potential applications in electronics and photonics. As yet, there are no practical uses of nanowires, except for research purposes, but certain properties and characteristics of nanowires look very promising for the future. Graphical abstractSemiconductor nanowires are attracting more and more interest for their applications in nanoscience and nanotechnology. The characteristic of the nanowires is their geometry with a diameter in the range of a few nanometers and a length far greater than their diameter. The structural defects often lead to mechanical defects. By reducing the number of defects per unit length, decreasing the lateral dimensions, crystalline nanowires are expected to be more resistant than the solid. Recently nanowires are attracting intense interest for solar energy conversion. In this review, we summarize the different methods of nanowires production and their applications. Special focus will be kept on silicon nanowires.
由于硅纳米线(SiNWs)在电子学和光子学领域的潜在应用,其合成与表征最近备受关注。到目前为止,除了用于研究目的外,纳米线尚无实际用途,但纳米线的某些特性和特征在未来看起来非常有前景。图形摘要半导体纳米线因其在纳米科学和纳米技术中的应用而越来越受到关注。纳米线的特点是其几何形状,直径在几纳米范围内,长度远大于其直径。结构缺陷常常导致机械缺陷。通过减少每单位长度的缺陷数量,减小横向尺寸,晶体纳米线预计比固体更具抗性。最近,纳米线在太阳能转换方面引起了强烈兴趣。在本综述中,我们总结了纳米线的不同制备方法及其应用。将特别关注硅纳米线。