Lim Taekyung, Bong Jihye, Mills Edmund M, Kim Sangtae, Ju Sanghyun
†Department of Physics, Kyonggi University, Suwon, Gyeonggi-Do 443-760, Republic of Korea.
‡Department of Chemical Engineering and Materials Science, University of California, Davis, California 95616-5294, United States.
ACS Appl Mater Interfaces. 2015 Aug 5;7(30):16296-302. doi: 10.1021/acsami.5b03038. Epub 2015 Jul 22.
The capability for robust operation of nanoscale transistors under harsh environments is equally important as their operating parameters such as high on-currents, high mobility, and high sensing selectivity. For electronic/biomedical applications, in particular, transistor operation must be stable under diverse conditions including ambient humidity, water, blood, and oxygen. Here we demonstrate the use of a self-assembled monolayer of octadecylphosphonic acid (OD-PA) to passivate a functionalized nanowire transistor, allowing the device to operate consistently in such environments. In contrast, without passivation, the characteristics (especially the threshold voltage) of identical nanowire transistors were dramatically altered under these conditions. Furthermore, the OD-PA-passivated transistor shows no signs of long-term stability deterioration and maintains equally high sensing selectivity to light under the harsh environments because of OD-PA's optical transparency. These results demonstrate the suitability of OD-PA passivation methods for fabricating commercial nanoelectronics.
纳米级晶体管在恶劣环境下的稳健运行能力与其诸如高导通电流、高迁移率和高传感选择性等运行参数同样重要。特别是对于电子/生物医学应用,晶体管在包括环境湿度、水、血液和氧气在内的各种条件下必须稳定运行。在此,我们展示了使用十八烷基膦酸(OD-PA)自组装单分子层来钝化功能化纳米线晶体管,使该器件能够在这类环境中持续运行。相比之下,未经钝化处理时,相同的纳米线晶体管在这些条件下其特性(尤其是阈值电压)会发生显著变化。此外,由于OD-PA的光学透明性,经OD-PA钝化的晶体管没有长期稳定性恶化的迹象,并且在恶劣环境下对光保持同样高的传感选择性。这些结果证明了OD-PA钝化方法适用于制造商用纳米电子器件。