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326 related items for PubMed ID: 33893886
21. A highly sensitive and accurate SERS/RRS dual-spectroscopic immunosensor for clenbuterol based on nitrogen/silver-codoped carbon dots catalytic amplification. Yao D, Li C, Wen G, Liang A, Jiang Z. Talanta; 2020 Mar 01; 209():120529. PubMed ID: 31892061 [Abstract] [Full Text] [Related]
22. A simple approach for ultrasensitive detection of bisphenols by multiplexed surface-enhanced Raman scattering. De Bleye C, Dumont E, Hubert C, Sacré PY, Netchacovitch L, Chavez PF, Hubert P, Ziemons E. Anal Chim Acta; 2015 Aug 12; 888():118-25. PubMed ID: 26320966 [Abstract] [Full Text] [Related]
23. Colorimetric detection of bisphenol A based on unmodified aptamer and cationic polymer aggregated gold nanoparticles. Zhang D, Yang J, Ye J, Xu L, Xu H, Zhan S, Xia B, Wang L. Anal Biochem; 2016 Apr 15; 499():51-56. PubMed ID: 26820097 [Abstract] [Full Text] [Related]
24. Surface-enhanced Raman scattering aptasensor for ultrasensitive trace analysis of bisphenol A. Chung E, Jeon J, Yu J, Lee C, Choo J. Biosens Bioelectron; 2015 Feb 15; 64():560-5. PubMed ID: 25310489 [Abstract] [Full Text] [Related]
25. A New Covalent Organic Framework of Dicyandiamide-Benzaldehyde Nanocatalytic Amplification SERS/RRS Aptamer Assay for Ultratrace Oxytetracycline with the Nanogold Indicator Reaction of Polyethylene Glycol 600. Liang A, Zhi S, Liu Q, Li C, Jiang Z. Biosensors (Basel); 2021 Nov 16; 11(11):. PubMed ID: 34821674 [Abstract] [Full Text] [Related]
26. A new SERS quantitative analysis strategy for ultratrace chloramphenicol with Fe3O4@MIP nanocatalytic probe. Huang H, Wen G, Liang A, Jiang Z. Spectrochim Acta A Mol Biomol Spectrosc; 2024 Dec 05; 322():124732. PubMed ID: 38971083 [Abstract] [Full Text] [Related]
27. MXene nanosheet loaded gold nanocluster catalytic amplification-aptamer SERS quantitative assay platform for isocarbophos. Zhi S, Shi J, Liang A, Jiang Z. Talanta; 2023 Jan 01; 251():123771. PubMed ID: 35952500 [Abstract] [Full Text] [Related]
28. A nanosol SERS/RRS aptamer assay of trace cobalt(ii) by covalent organic framework BtPD-loaded nanogold catalytic amplification. Wen G, Xiao Y, Chen S, Zhang X, Jiang Z. Nanoscale Adv; 2021 Jun 30; 3(13):3846-3859. PubMed ID: 36133010 [Abstract] [Full Text] [Related]
29. A novel SERS sensor for the ultrasensitive detection of kanamycin based on a Zn-doped carbon quantum dot catalytic switch controlled by nucleic acid aptamer and size-controlled gold nanorods. Wang X, Chen C, Waterhouse GIN, Qiao X, Xu Z. Food Chem; 2021 Nov 15; 362():130261. PubMed ID: 34111691 [Abstract] [Full Text] [Related]
34. Building SERS-active heteroassemblies for ultrasensitive Bisphenol A detection. Feng J, Xu L, Cui G, Wu X, Ma W, Kuang H, Xu C. Biosens Bioelectron; 2016 Jul 15; 81():138-142. PubMed ID: 26943786 [Abstract] [Full Text] [Related]
35. SERS strategy based on the modified Au nanoparticles for highly sensitive detection of bisphenol A residues in milk. Yang L, Chen Y, Shen Y, Yang M, Li X, Han X, Jiang X, Zhao B. Talanta; 2018 Mar 01; 179():37-42. PubMed ID: 29310247 [Abstract] [Full Text] [Related]
37. A surface enhanced Raman scattering quantitative analytical platform for detection of trace Cu coupled the catalytic reaction and gold nanoparticle aggregation with label-free Victoria blue B molecular probe. Li C, Ouyang H, Tang X, Wen G, Liang A, Jiang Z. Biosens Bioelectron; 2017 Jan 15; 87():888-893. PubMed ID: 27662583 [Abstract] [Full Text] [Related]
38. Simple and rapid detection of bisphenol A using a gold nanoparticle-based colorimetric aptasensor. Lee EH, Lee SK, Kim MJ, Lee SW. Food Chem; 2019 Jul 30; 287():205-213. PubMed ID: 30857691 [Abstract] [Full Text] [Related]