| Literature DB >> 24336153 |
Peipei Guo1, Fei Xiao1, Qian Liu2, Hongfang Liu1, Yunlong Guo3, Jian Ru Gong2, Shuai Wang1, Yunqi Liu3.
Abstract
A novel strategy to synthesizeEntities:
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Year: 2013 PMID: 24336153 PMCID: PMC3863812 DOI: 10.1038/srep03499
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1(A) Schematic illustration of the formation of N, S-G by one-pot microbial reduction process. (B) TEM image of N, S-G. (C) UV-vis absorption spectra of GO aqueous dispersion before (a) and after (b) reduction. (D) FT-IR spectra and (E) Raman spectra of GO (a) and N, S-G (b), respectively.
Figure 2(A) XPS survey spectrum of GO and N, S-G. (B) Curve fit of N 1s spectrum of N, S-G, (C) Curve fit of S 2p spectrum of N, S-G.
Figure 3(A) DPASV of 15 μg L−1 of Cd2+ and Pb2+ on (a) GCE, (b) Bi/GCE, (c) Nafion/GCE, (d) (N, S-G)-Nafion/GCE and (e) Bi/(N, S-G)-Nafion/GCE. (B) DPASV of simultaneous analysis of Pb2+ and Cd2+ with concentrations of 30, 24, 18, 15, 12 and 9 μg L−1, respectively. (C) The calibration curve of Cd2+ and Pb2+, respectively. Supporting electrolyte: 0.2 M acetate buffer (pH 4.6), deposition potential: −1.2 V, deposition time: 300 s. (D) DPASV of 15 μg L−1 of Cd2+ and Pb2+ on rGO-Nafion/GCE, Bi/(S-G)-Nafion/GCE, Bi/(N-G)-Nafion/GCE, and Bi/(N, S-G)-Nafion/GCE (from bottom to upper).