Gu Zhiqi, Wang Jin, Miao Bin, Zhao Lei, Liu Xinsheng, Wu Dongmin, Li Jiadong
School of Nano Technology and Nano Bionics, University of Science and Technology of China Hefei 230026 China.
i-Lab, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences Suzhou 215125 People's Republic of China
RSC Adv. 2019 May 16;9(27):15341-15349. doi: 10.1039/c9ra02055a. eCollection 2019 May 14.
In this paper, we propose a highly efficient surface modification strategy on an AlGaN/GaN high electron mobility transistor (HEMT), where ethanolamine (EA) was utilized to functionalize the surface of GaN and provided amphoteric amine groups for probe molecular immobilization for bioassay application. The molecular gated-AlGaN/GaN HEMT was utilized for pH and prostate-specific antigen (PSA) detection to verify its performance as a biosensor. Benefitting from the high coating quality on the GaN surface, the performance of our biosensor is drastically improved compared to other AlGaN/GaN HEMT based pH and PSA biosensors reported before. Our molecular gated-AlGaN/GaN HEMT biosensor has achieved good static electrical performance for pH sensing, such as high sensitivity, good linearity and chemical stability. Moreover, after further immobilization of PSA antibody onto the EA aminated GaN surface, the limit of detection (LOD) for PSA detection is as low as 1 fg mL in PBS buffer, which has reached an at least two orders of magnitude decrease compared to any other AlGaN/GaN HEMT based PSA biosensor reported before. And the sensitivity of our PSA biosensor has achieved a substantial increase, reaching up to 2.04% for 100 ng mL. The measurements of pH and PSA utilizing the EA modified AlGaN/GaN HEMT biosensor indicate that the surface modification strategy on the GaN proposed in this paper can effectively improve the performance of the AlGaN/GaN HEMT based biosensor, which demonstrates a promising application prospect in the AlGaN/GaN HEMT based biological detection field.
在本文中,我们提出了一种在氮化铝镓/氮化镓高电子迁移率晶体管(HEMT)上的高效表面改性策略,其中乙醇胺(EA)被用于功能化氮化镓表面,并为生物测定应用中的探针分子固定提供两性胺基团。分子门控氮化铝镓/氮化镓HEMT被用于pH值和前列腺特异性抗原(PSA)检测,以验证其作为生物传感器的性能。受益于氮化镓表面的高涂层质量,与之前报道的其他基于氮化铝镓/氮化镓HEMT的pH值和PSA生物传感器相比,我们的生物传感器性能得到了显著提升。我们的分子门控氮化铝镓/氮化镓HEMT生物传感器在pH传感方面实现了良好的静态电学性能,如高灵敏度、良好的线性度和化学稳定性。此外,在将PSA抗体进一步固定到EA胺化的氮化镓表面后,在PBS缓冲液中PSA检测的检测限低至1 fg/mL,与之前报道的任何其他基于氮化铝镓/氮化镓HEMT的PSA生物传感器相比,至少降低了两个数量级。并且我们的PSA生物传感器的灵敏度有了大幅提高,对于100 ng/mL达到了2.04%。利用EA修饰的氮化铝镓/氮化镓HEMT生物传感器进行的pH值和PSA测量表明,本文提出的氮化镓表面改性策略可以有效提高基于氮化铝镓/氮化镓HEMT的生物传感器的性能,这在基于氮化铝镓/氮化镓HEMT的生物检测领域展示了广阔的应用前景。