Aftab Sikandar, Iqbal Muhammad Zahir, Rim You Seung
Department of Intelligent Mechatronics Engineering, Sejong University, Seoul, 05006, South Korea.
Faculty of Engineering Sciences, Ghulam Ishaq Khan Institute of Engineering Sciences and Technology, Topi, Khyber Pakhtunkhwa, 23640, Pakistan.
Small. 2023 Jan;19(1):e2205418. doi: 10.1002/smll.202205418. Epub 2022 Nov 14.
Transition metal dichalcogenides (TMDs) van der Waals (vdW) 1D heterostructures are recently synthesized from 2D nanosheets, which open up new opportunities for potential applications in electronic and optoelectronic devices. The most recent and promising strategies in regards to forming 1D TMDs nanotubes (NTs) or nanoscrolls (NSs) in this review article as well as their heterostructures that are produced from 2D TMDs are summarized. In order to improve the functionality of ultrathin 1D TMDs that are coaxially combined with boron nitride nanotubes and single-walled carbon nanotubes. 1D heterostructured devices perform better than 2D TMD nanosheets when the two devices are compared. The photovoltaic effect in WS or MoS NTs without a junction may exceed the Shockley-Queisser limit for the above-band-gap photovoltage generation. Photoelectrochemical hydrogen evolution is accelerated when monolayer WS or MoS NSs are incorporated into a heterojunction. In addition, the photovoltaic performance of the WSe /MoS NSs junction is superior to that of the performance of MoS NSs. The summary of the current research about 1D TMDs can be used in a variety of ways, which assists in the development of new types of nanoscale optoelectronic devices. Finally, it also summarizes the current challenges and prospects.
过渡金属二硫属化物(TMDs)范德华(vdW)一维异质结构最近由二维纳米片合成,这为电子和光电器件的潜在应用开辟了新机遇。本文综述了关于形成一维TMDs纳米管(NTs)或纳米卷(NSs)的最新且有前景的策略,以及由二维TMDs制备的它们的异质结构。为了提高与氮化硼纳米管和单壁碳纳米管同轴组合的超薄一维TMDs的功能。当比较这两种器件时,一维异质结构器件的性能优于二维TMD纳米片。无结的WS或MoS NTs中的光伏效应可能超过用于产生带隙以上光电压的肖克利 - 奎塞尔极限。当将单层WS或MoS NSs纳入异质结时,光电化学析氢速度加快。此外,WSe/MoS NSs结的光伏性能优于MoS NSs的性能。关于一维TMDs的当前研究总结可用于多种方式,这有助于新型纳米级光电器件的开发。最后,它还总结了当前的挑战和前景。