Controllable silver nanostructure synthesis in a microfluidic channel for real-time SERS system ; 마이크로 채널 내의 은 나노 구조체 형성 기법 개발 및 SERS 시스템으로의 응용

التفاصيل البيبلوغرافية
العنوان: Controllable silver nanostructure synthesis in a microfluidic channel for real-time SERS system ; 마이크로 채널 내의 은 나노 구조체 형성 기법 개발 및 SERS 시스템으로의 응용
المؤلفون: Leem, Ju-Young(임주영)
المساهمون: Sung, Hyung-Jin(성형진)
بيانات النشر: 한국과학기술원
سنة النشر: 2013
المجموعة: Korea Advanced Institute of Science and Technology: KOASAS - KAIST Open Access Self-Archiving System
مصطلحات موضوعية: Silver thin film, SERS, 폴리올 방법, 마이크로 채널, 패터닝, 은 박막, Patterning, Microfluidic system, Polyol synthesis
الوصف: 학위논문(석사) - 한국과학기술원 : 기계공학전공, 2013.8, [ vi, 40 p. ] ; Raman spectroscopy is a label-free detecting technique and it provides fingerprint spectra for identifying molecules and intensity variation as concentration varying. Ag or Au nanoparticle clusters in a thin film form are used as SERS substrate due to its characteristics of enhancing Raman signals. For SERS, silver nanostructures are normally fabricated by chemical vapor deposition (CVD), physical vapor deposition (PVD) and E-beam sputtering. These are performed at high temperature (over 900°C) and high vacuum conditions. The annealing process is needed after the deposition to form nanostructure called islands. In this study, we present a manageable and low-cost method to fabricate Ag nanostructured thin film by using microfluidic system for SERS application. Under atmospheric pressure, Ag thin film formation process is based on polyol method in microfluidic channel at 150°C. For fabrication, ethylene glycol (EG, HO(CH2) 2OH) was used as a solvent. As a precursor, 10 mL of 0.1 M silver nitrate (AgNO3), 10 mL of 0.15 M polyvinylpyrrolidone (PVP, (C6H9NO)n), and 200 μL 4 mM copper chloride (CuCl2). When EG oxidizes and generates electrons, Ag ions form into a nucleus of silver cluster and nuclei of silver molecules are stabilized by PVP. The solution was injected into a polydimethylsiloxane (PDMS) microfluidic channel and heated at 150°C. During the synthesis, EG reduces Ag ions into Ag nanoparticles at the bottom surface of the substrate. The size of Ag nanoparticles constituting Ag thin film was increased as increasing the synthesis time. After Ag thin film formed, the microfluidic channel was cleaned by ethanol (C2H3OH) injection to remove PVP from Ag thin film surface. The optimum region and synthesis time for SERS detection were defined. For SERS detection, adenosine solution was prepared in various concentrations and loaded on the Ag thin film formed inside of microfluidic channel. The fingerprint spectrum of adenosine was obtained and intensity of spectru. ; 한국과학기술원 : 기계공학전공
نوع الوثيقة: other/unknown material
اللغة: English
الاتاحة: http://hdl.handle.net/10203/197511
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=566237&flag=t
رقم الانضمام: edsbas.32DE07C6
قاعدة البيانات: BASE