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   rapid in situ sers analysis of pesticide residues on plant surfaces based on micelle extraction of targets and stabilization of ag nanoparticle aggregates  
   
نویسنده kang yan ,li long ,chen wanchao ,zhang feiyu ,du yiping ,wu ting
منبع food analytical methods - 2018 - دوره : 11 - شماره : 11 - صفحه:3161 -3169
چکیده    A structure of polyurethane micelle/ag nanoparticle (ag np) cluster was fabricated as surface-enhanced raman scattering (sers) substrate for in situ extracting organic compounds on the surface of different matrixes, in which polyurethane micelles acted as the host material to capture target molecules and stabilize nanoparticle cluster. this method provided stable aqueous suspensions of ag np cluster due to the amphiphilic properties of polyurethane. we demonstrated sers-based in situ detection of pesticides on vegetables and fruit skin, by simply dropping polyurethane micelle/ag nps substrate on the sample surface where the target molecules could be detected without a previous elution and extracting. the obtained results showed that this polyurethane micelle/ag np cluster substrate had excellent sers performance for pesticide molecules with ideal stability and reproducibility. with further optimization, the limit of detection of 0.03 μg/ml acetamiprid, 0.08 μg/ml phosmet, and 0.002 μg/ml thiabendazole was obtained, respectively.
کلیدواژه polyurethane micelle ,ag nanoparticles ,in situ ,pesticides
آدرس east china university of science and technology, and research centre of analysis and test, school of chemistry & molecular engineering, shanghai key laboratory of functional materials chemistry, people’s republic of china, east china university of science and technology, and research centre of analysis and test, school of chemistry & molecular engineering, shanghai key laboratory of functional materials chemistry, people’s republic of china, east china university of science and technology, and research centre of analysis and test, school of chemistry & molecular engineering, shanghai key laboratory of functional materials chemistry, people’s republic of china, east china university of science and technology, and research centre of analysis and test, school of chemistry & molecular engineering, shanghai key laboratory of functional materials chemistry, people’s republic of china, east china university of science and technology, and research centre of analysis and test, school of chemistry & molecular engineering, shanghai key laboratory of functional materials chemistry, people’s republic of china, east china university of science and technology, and research centre of analysis and test, school of chemistry & molecular engineering, shanghai key laboratory of functional materials chemistry, people’s republic of china
 
     
   
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