ridm@nrct.go.th   ระบบคลังข้อมูลงานวิจัยไทย   รายการโปรดที่คุณเลือกไว้

Carbon materials-based sensors: State-of-the-art and future prospects

หน่วยงาน Universiti Sains Malaysia, Malaysia

รายละเอียด

ชื่อเรื่อง : Carbon materials-based sensors: State-of-the-art and future prospects
นักวิจัย : Syamsul, M. , Shailib, M. , Suaebah, E. , Kawarada, H.
คำค้น : QC1-999 Physics
หน่วยงาน : Universiti Sains Malaysia, Malaysia
ผู้ร่วมงาน : -
ปีพิมพ์ : 2563
อ้างอิง : http://eprints.usm.my/49108/1/MSNSB02.pdf%20cut.pdf , Syamsul, M. and Shailib, M. and Suaebah, E. and Kawarada, H. (2020) Carbon materials-based sensors: State-of-the-art and future prospects. In: The 9th International Conference on Sensors (AsiaSense 2020), 30 June - 1 July 2020, Bangi Resort Hotel, Bangi, Selangor, Malaysia.
ที่มา : -
ความเชี่ยวชาญ : -
ความสัมพันธ์ : http://eprints.usm.my/49108/
ขอบเขตของเนื้อหา : -
บทคัดย่อ/คำอธิบาย :

In this work, the focuses were made on carbon related materials such as diamond and graphene as solution-gate fieldeffect transistor (SGFET) towards pH sensing of carboxyl and amine functional groups and its compatibility with estrogen (17β-estradiol) aptamer. The functionalization of diamond graphene with carboxyl were achieved through anodization by applying a sequential potential scan in Carmody buffer solution (pH 7). The carboxyl-terminated surfaces were exposed to nitrogen radicals to generate an amine-terminated surface [1]. Raman spectroscopy was used to determine the defect density of the carbon related materials caused by the anodization. The sequential anodization in Carmody buffer solution at pH 7 had low defective effect on carbon structure and shows that the original structure of carbon was conserved [2]. The pH sensitivity will be presented in detail and will be finalized with the compatibility with estrogen (17β-estradiol) aptamer, which the supporting DNA strands were immobilized and an aptamer was hybridized to prepare a detection pair to bind with any 17β-estradiol molecule, as the aptamer captures the 17βestradiol molecule naturally [3]. These detections will be demonstrated through optical (fluorescence microscopy) and electrical measurements (current-voltage) and summarized with carbon materials-based sensors towards the actual application of designing diamond/graphene-based biosensors

บรรณานุกรม :
Syamsul, M. , Shailib, M. , Suaebah, E. , Kawarada, H. . (2563). Carbon materials-based sensors: State-of-the-art and future prospects.
    กรุงเทพมหานคร : Universiti Sains Malaysia, Malaysia.
Syamsul, M. , Shailib, M. , Suaebah, E. , Kawarada, H. . 2563. "Carbon materials-based sensors: State-of-the-art and future prospects".
    กรุงเทพมหานคร : Universiti Sains Malaysia, Malaysia.
Syamsul, M. , Shailib, M. , Suaebah, E. , Kawarada, H. . "Carbon materials-based sensors: State-of-the-art and future prospects."
    กรุงเทพมหานคร : Universiti Sains Malaysia, Malaysia, 2563. Print.
Syamsul, M. , Shailib, M. , Suaebah, E. , Kawarada, H. . Carbon materials-based sensors: State-of-the-art and future prospects. กรุงเทพมหานคร : Universiti Sains Malaysia, Malaysia; 2563.