Mesoporous Au films assembled on flexible cellulose nanopaper as high-performance SERS substrates

介孔材料 材料科学 纳米技术 电极 纳米纤维 化学工程 纤维素 基质(水族馆) 纳米纤维素 化学 有机化学 催化作用 地质学 工程类 物理化学 海洋学
作者
Dabum Kim,Jeonghun Kim,Joel Henzie,Youngsang Ko,Hyunsoo Lim,Goomin Kwon,Jongbeom Na,Hyun-Jong Kim,Yusuke Yamauchi,Jungmok You
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:419: 129445-129445 被引量:116
标识
DOI:10.1016/j.cej.2021.129445
摘要

• The cellulose nanopaper-based ultra-sensitive SERS substrates is demonstrated. • Nanoarchitectured mesoporous gold films was electrodeposited on AgNWs/nanopaper. • The newly fabricated nanoarchitectured porous gold generates numerous hotspots. • High-performance SERS substrate enables to detect femtomolar (fM)-level molecules. • Enhancement factor of 8.72 × 10 11 was achieved by fabricated SERS substrates. The fabrication of newly nanoarchitectured mesoporous gold films on flexible cellulose nanofiber paper is reported for flexible ultra-sensitive SERS substrates, enabling femtomolar (fM)-level detection with enhancement factor of 8.72 × 10 11 . The fabrication of nanoarchitectured mesoporous gold films on flexible cellulose nanofiber (CNF) paper is reported for high-performance surface-enhanced Raman scattering (SERS) substrates via an electrochemical deposition method using polymeric micelles. Silver nanowires (AgNWs) are coated onto 2,2,6,6-tetramethylpiperidine-1-oxy-oxidized CNF nanopaper (TEMPO-CNF), and the resulting AgNW@TEMPO-CNF substrate is used as a conductive electrode to guide the thickness-controllable electrodeposition of mesoporous Au. Interestingly, the electrodeposition of mesoporous Au on the AgNW@TEMPO-CNF nanopaper formed a dense network of anisotropic nanoscale creases and channels, whereas deposition on flat Au electrodes makes round mesopores. Numerical simulations performed on both types of structures show that these anisotropic mesopores create more hotspots per unit area than the round mesopore films. Importantly, the mAu@AgNW@TEMPO-CNF nanopaper enables the highly sensitive detection of rhodamine 6G at concentrations as low as 100 fM, with an enhancement factor of 8.72 × 10 11 and excellent reproducibility. As a demonstration of their utility in practical chemical detection measurements, the SERS substrates are used to detect the pesticide thiram and a model gas, 2-naphthalenethiol; the detection limits were 10 fM and 1 ppb, respectively. SERS substrates composed of mAu@AgNW@TEMPO-CNF nanopaper may serve as an inexpensive, flexible, and stable chemical detection platform to sense both solution- and gas-phase analytes.
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