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Highly sensitive and selective detection of human-derived volatile organic compounds based on odorant binding proteins functionalized silicon nanowire array

Sensors and Actuators B: Chemical. 2020-04; 
AnranGao;YiWang;DongweiZhang;YunqianHe;LeiZhang;YanxiangLiu;YuelinWang;Haifen;TieLi
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Gene Synthesis Genes of AgOBP5, AgOBP6 and AgOBP7 were synthesized by Genscript (Nanjing, China), and cloned into pET28a vector between BamHI and XhoI restriction site. Get A Quote

摘要

In this paper, we report the real-time, ultrasensitive, reproducible detection of volatile odorant molecules emitted by human based on free-standing silicon nanowire (SiNW) array functionalized with Anopheles gambiae odorant binding protein (AgOBP). Highly responsive SiNW array was fabricated with a novel low-cost top-down fabrication approach. The free-standing and triangular cross sectional structure allowed efficient sensing of AgOBP conformational change induced by odorant binding. The resulting bioelectronic nose (B-nose) possessed high sensitivity down to several ppb, and outstanding size and functional group selectivity. The device showed reproducible and long-lasting performances. We also demonstrated t... More

关键词

Bioelectronic nose;Volatile organic compounds (VOCs);High sensitivity;Silicon nanowire array;Odorant binding proteins (OBPs)