Nanocomposite Au/Si Cantilevers for Tip-Enhanced Raman Scattering (TERS) Sensors

被引:1
作者
Slekiene, Nora [1 ]
Snitka, Valentinas [2 ]
机构
[1] Univ Vilnius, Inst Biomed Sci, Fac Med, Pharm & Pharmacol Ctr, MK Ciurlionio G 21-27, LT-03101 Vilnius, Lithuania
[2] Kaunas Univ Technol, Res Ctr Microsyst & Nanotechnol, 65 Studentu Str, LT-51369 Kaunas, Lithuania
关键词
Tip-enhanced Raman spectroscopy (TERS); electrochemical etching; electroless deposition; sputtering; all-metal Au cantilevers; OPTICAL MICROSCOPY; GRAPHENE OXIDE; GOLD TIPS; SPECTROSCOPY; FABRICATION; PROBES;
D O I
10.3390/chemosensors11040218
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
In this study, we proposed and tested different procedures for the preparation of Au/Si cantilevers for Tip-enhanced Raman spectroscopy (TERS). The preparation of Au/Si TERS sensors was based on three methods: chemical (electroless) deposition, thermal evaporation of Au on the tip of commercially available cantilevers in a vacuum, and electrochemical etching of Au microwires. We fabricated and tested four types of TERS probes, and then used these probes for TERS measurements using graphene oxide (GO) as the target analyte. The probe tips were characterized using scanning electron microscopy (SEM). This article presents a comparative analysis of the fabrication methods, quality of the obtained probe tips, and enhancement factors (EFs) for the four types of TERS cantilevers (probes) produced by chemical deposition, sputtering, and electrochemical methods.
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页数:17
相关论文
共 40 条
[11]   Experimental test of blind tip reconstruction for scanning probe microscopy [J].
Dongmo, LS ;
Villarrubia, JS ;
Jones, SN ;
Renegar, TB ;
Postek, M ;
Song, JF .
ULTRAMICROSCOPY, 2000, 85 (03) :141-153
[12]   Effects of electrolyte concentration on the morphology control of gold nanotips in electrochemical etching [J].
Feng, Haizhao ;
Xu, Changhui ;
Wang, Yongkang ;
Wei, Zhiyong ;
Li, Xiao ;
Kan, Yajing ;
Zhang, Yan .
JOURNAL OF APPLIED ELECTROCHEMISTRY, 2020, 50 (07) :799-807
[13]   Gold Nanocone Near-Field Scanning Optical Microscopy Probes [J].
Fleischer, Monika ;
Weber-Bargioni, Alexander ;
Altoe, M. Virginia P. ;
Schwartzberg, Adam M. ;
Schuck, P. James ;
Cabrini, Stefano ;
Kern, Dieter P. .
ACS NANO, 2011, 5 (04) :2570-2579
[14]   Low cost tips for tip-enhanced Raman spectroscopy fabricated by two-step electrochemical etching of 125 μm diameter gold wires [J].
Foti, Antonino ;
Barreca, Francesco ;
Fazio, Enza ;
D'Andrea, Cristiano ;
Matteini, Paolo ;
Marago, Onofrio Maria ;
Gucciardi, Pietro Giuseppe .
BEILSTEIN JOURNAL OF NANOTECHNOLOGY, 2018, 9 :2718-2729
[15]   Controllable Fabrication of Au-Coated AFM Probes via a Wet-Chemistry Procedure [J].
Gao, Lizhen ;
Zhao, Huiling ;
Li, Yinli ;
Li, Tianfeng ;
Chen, Dong ;
Liu, Bo .
NANOSCALE RESEARCH LETTERS, 2018, 13
[16]   Next generation SERS- atomic scale platform for molecular level detection [J].
Haldavnekar, Rupa ;
Venkatakrishnan, Krishnan ;
Tan, Bo .
APPLIED MATERIALS TODAY, 2020, 18
[17]   Mechanism of Cellular Uptake of Graphene Oxide Studied by Surface-Enhanced Raman Spectroscopy [J].
Huang, Jie ;
Zong, Cheng ;
Shen, He ;
Liu, Min ;
Chen, Biao ;
Ren, Bin ;
Zhang, Zhijun .
SMALL, 2012, 8 (16) :2577-2584
[18]   Tip-enhanced Raman spectroscopy: tip-related issues [J].
Huang, Teng-Xiang ;
Huang, Sheng-Chao ;
Li, Mao-Hua ;
Zeng, Zhi-Cong ;
Wang, Xiang ;
Ren, Bin .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2015, 407 (27) :8177-8195
[19]   Atomic force and shear force based tip-enhanced Raman spectroscopy and imaging [J].
Kharintsev, S. S. ;
Hoffmann, G. G. ;
Dorozhkin, P. S. ;
de With, G. ;
Loos, J. .
NANOTECHNOLOGY, 2007, 18 (31)
[20]  
Kumar N, 2015, EPJ TECH INSTRUM, V2, DOI 10.1140/epjti/s40485-015-0019-5