Han Kwanghee, Lee Heeyeon, Kwon Minseong, Menon Vinod, Jang Chaun, Kim Young Duck
Department of Physics, Kyung Hee University, Seoul, 02447, Republic of Korea.
Department of Physics, City College of New York, New York, NY, 10031, USA.
Nanoscale. 2025 Jul 10;17(27):16223-16229. doi: 10.1039/d4nr03845b.
Two-dimensional (2D) van der Waals semiconductors show promise for atomically thin, flexible, and transparent optoelectronic devices in future technologies. However, developing high-performance field-effect transistors (FETs) based on 2D materials is impeded by two key challenges, namely, the high contact resistance at the 2D semiconductor-metal interface and limited effective doping strategies. Here, we present a novel approach to overcome these challenges using self-propagating liquid Field's metal, a eutectic alloy with a low melting point of approximately 62 °C. By modifying pre-patterned electrodes on WSe FETs through the deposition of Field's metal onto contact pad edges followed by vacuum annealing, we create new semimetal electrodes that seamlessly incorporate the liquid metal into 2D semiconductors. This integration preserves the original electrode architecture while transforming to semimetal compositions of Field's metal, such as Bi, In, and Sn, modifies the work functions to 2D semiconductors, resulting in reduced contact resistance without inducing Fermi-level pinning, and improves charge carrier mobilities. Our method enhances the electrical performance of 2D devices and opens new avenues for designing high-resolution liquid metal circuits suitable for stretchable, flexible, and wearable 2D semiconductor applications.
二维(2D)范德华半导体在未来技术中展现出用于原子级薄、柔性且透明光电器件的潜力。然而,基于二维材料开发高性能场效应晶体管(FET)受到两个关键挑战的阻碍,即二维半导体 - 金属界面处的高接触电阻和有限的有效掺杂策略。在此,我们提出一种新颖的方法来克服这些挑战,该方法使用自蔓延液态菲尔德金属,这是一种熔点约为62°C的低熔点共晶合金。通过将菲尔德金属沉积到接触垫边缘,随后进行真空退火,对WSe FET上预先图案化的电极进行改性,我们创建了新的半金属电极,该电极将液态金属无缝融入二维半导体中。这种整合保留了原始电极结构,同时转变为菲尔德金属的半金属成分,如Bi、In和Sn,改变了二维半导体的功函数,从而降低了接触电阻而不引起费米能级钉扎,并提高了载流子迁移率。我们的方法增强了二维器件的电学性能,并为设计适用于可拉伸、柔性和可穿戴二维半导体应用的高分辨率液态金属电路开辟了新途径。