3D NANOPLASMONIC SUBSTRATE, DETECTION DEVICE, AND DETECTION METHOD CAPABLE OF RAPID MOLECULAR DETECTION

The present application relates to a 3D nanoplasmonic substrate, a detection device, and a detection method, which are capable of rapid molecular detection. More specifically, the present application is concerned with a nanoplasmonic substrate, a detection device, and a detection method, capable of...

Full description

Saved in:
Bibliographic Details
Main Authors JUNG, Ho-sang, KIM, Dong-ho, PARK, Sung-gyu, MUN, Chae-won
Format Patent
LanguageEnglish
French
Korean
Published 15.02.2024
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:The present application relates to a 3D nanoplasmonic substrate, a detection device, and a detection method, which are capable of rapid molecular detection. More specifically, the present application is concerned with a nanoplasmonic substrate, a detection device, and a detection method, capable of rapid molecular detection, wherein an extremely trace amount of a sample can be captured and analyzed at high speed while galvanic replacement reactions are used to drastically increase the total volume and total surface area of hotspots. La présente demande se réfère à un substrat nanoplasmonique 3D, à un dispositif de détection et à un procédé de détection qui permettent une détection moléculaire rapide. Plus spécifiquement, la présente demande concerne un substrat nanoplasmonique, un dispositif de détection et un procédé de détection permettant une détection moléculaire rapide, une quantité extrêmement faible d'un échantillon pouvant être capturée et analysée à grande vitesse tandis que des réactions de remplacement galvanique sont utilisées pour accroître considérablement le volume total et la surface totale de points chauds. 본원은 고속 분자 검출이 가능한 3차원 나노플라즈모닉 기판, 검출장치, 및 검출방법에 관한 것이다. 더욱 상세하게, 본원은 갈바닉 치환 반응을 이용하여 핫스팟(hotspots)의 총부피 및 총표면적을 획기적으로 증가시키는 동시에 극미량의 시료를 포집하고 고속으로 분석할 수 있는, 고속 분자 검출이 가능한 나노플라즈모닉 기판, 검출장치, 및 검출방법에 관한 것이다.
Bibliography:Application Number: WO2022KR18319