TY - JOUR
T1 - Rolled-up SiOx/SiNx microtubes with an enhanced quality factor for sensitive solvent sensing
AU - Song, Pengfei
AU - Chen, Cheng
AU - Qu, Juntian
AU - Ou, Pengfei
AU - Dastjerdi, M. H.T.
AU - Mi, Zetian
AU - Song, Jun
AU - Liu, Xinyu
N1 - Publisher Copyright:
© 2018 IOP Publishing Ltd.
PY - 2018/8/3
Y1 - 2018/8/3
N2 - The microtubes made through rolling-up of strain-engineered nanomembranes have received growing research attention after their first invention due to the technology's high flexibility, integrability, and versatility. These rolled-up microtubes have been used for a variety of device applications including sensors, batteries and transistors, among others. This paper reports the development of highly sensitive whispering-gallery mode (WGM) chemical sensors based on rolled-up microtube optical microcavities (RUM-OCs). For the first time, such microcavities were batch fabricated through rolling-up of plasma-enhanced chemical vapor deposition (PECVD)-synthesized SiOx/SiNx bilayer nanomembranes, which have better optical properties than the conventional electron-beam-deposited SiO/SiO2 bilayers. Benefiting from the high refractive index (RI) of PECVD-deposited SiNx, our RUM-OC shows an enhanced quality factor of 880 that is much higher than that (50) of a SiO/SiO2 RUM-OC with the same dimensions. The developed RUM-OC is used for sensitive WGM solvent sensing, and demonstrate a limit of detection of 10-4 refractive index unit (RIU), which is 10 times lower than that (10-3 RIU) of a SiO/SiO2 RUM-OC.
AB - The microtubes made through rolling-up of strain-engineered nanomembranes have received growing research attention after their first invention due to the technology's high flexibility, integrability, and versatility. These rolled-up microtubes have been used for a variety of device applications including sensors, batteries and transistors, among others. This paper reports the development of highly sensitive whispering-gallery mode (WGM) chemical sensors based on rolled-up microtube optical microcavities (RUM-OCs). For the first time, such microcavities were batch fabricated through rolling-up of plasma-enhanced chemical vapor deposition (PECVD)-synthesized SiOx/SiNx bilayer nanomembranes, which have better optical properties than the conventional electron-beam-deposited SiO/SiO2 bilayers. Benefiting from the high refractive index (RI) of PECVD-deposited SiNx, our RUM-OC shows an enhanced quality factor of 880 that is much higher than that (50) of a SiO/SiO2 RUM-OC with the same dimensions. The developed RUM-OC is used for sensitive WGM solvent sensing, and demonstrate a limit of detection of 10-4 refractive index unit (RIU), which is 10 times lower than that (10-3 RIU) of a SiO/SiO2 RUM-OC.
KW - chemical and biosensors
KW - optical cavity
KW - plasma-enhanced chemical vapor deposition
KW - rolled-up microtube
KW - whispering-gallery mode
UR - http://www.scopus.com/inward/record.url?scp=85051632708&partnerID=8YFLogxK
U2 - 10.1088/1361-6528/aad0b1
DO - 10.1088/1361-6528/aad0b1
M3 - Article
C2 - 29968573
AN - SCOPUS:85051632708
SN - 0957-4484
VL - 29
JO - Nanotechnology
JF - Nanotechnology
IS - 41
M1 - 415501
ER -