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- W3131142015 abstract "Seeded-growth synthetic protocols enable precise control of particle size and shape, crucial for many sensing applications. However, scaling-up these syntheses in a reproducible way is challenging, as minimal variation in process parameters such as seed size, concentration or reaction temperature can significantly alter the final product. Flow reactors enable tight control in the process parameters and high reproducibility of the synthesis, representing a potential technology to perform seeded-growth syntheses in large scale. This work reports the design of a flow platform for the controlled synthesis of spherical gold nanoparticles with size up to 150nm through a seeded-growth approach, and their use in Surface Enhanced Raman Scattering (SERS) and Photoinduced Enhanced Raman Spectroscopy (PIERS). The particle growth kinetics were studied via in situ time-resolved UV–Vis spectroscopy. The spectroscopic data were fitted with a kinetic model, which was subsequently used for the design of the reactor. The kinetics-based design approach enabled fast translation of the growth synthesis in flow, eventually allowing the on demand flow synthesis of particles with controllable size, ranging from 50 to 150nm, with high reproducibility and full precursor conversion. The particles were tested for SERS and PIERS for different substrates, including warfare agents and biomolecules, with enhancement factors between 103 and 108 depending on the analyte, demonstrating their potential for detection of various analytes." @default.
- W3131142015 created "2021-03-01" @default.
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- W3131142015 date "2021-11-01" @default.
- W3131142015 modified "2023-10-03" @default.
- W3131142015 title "Kinetics-based design of a flow platform for highly reproducible on demand synthesis of gold nanoparticles with controlled size between 50 and 150 nm and their application in SERS and PIERS sensing" @default.
- W3131142015 cites W116007438 @default.
- W3131142015 cites W1966177413 @default.
- W3131142015 cites W1967145704 @default.
- W3131142015 cites W1968202586 @default.
- W3131142015 cites W1975727123 @default.
- W3131142015 cites W1978363318 @default.
- W3131142015 cites W1983949849 @default.
- W3131142015 cites W1987842657 @default.
- W3131142015 cites W1988291528 @default.
- W3131142015 cites W1989462317 @default.
- W3131142015 cites W1999364829 @default.
- W3131142015 cites W2003184130 @default.
- W3131142015 cites W2004992918 @default.
- W3131142015 cites W2005527868 @default.
- W3131142015 cites W2010420024 @default.
- W3131142015 cites W2010861950 @default.
- W3131142015 cites W2011966231 @default.
- W3131142015 cites W2021194998 @default.
- W3131142015 cites W2030124038 @default.
- W3131142015 cites W2038598348 @default.
- W3131142015 cites W2043621883 @default.
- W3131142015 cites W2044440155 @default.
- W3131142015 cites W2045188930 @default.
- W3131142015 cites W2053578287 @default.
- W3131142015 cites W2064857095 @default.
- W3131142015 cites W2069322081 @default.
- W3131142015 cites W2070142057 @default.
- W3131142015 cites W2073170619 @default.
- W3131142015 cites W2073996759 @default.
- W3131142015 cites W2074037634 @default.
- W3131142015 cites W2077228161 @default.
- W3131142015 cites W2077741772 @default.
- W3131142015 cites W2081455948 @default.
- W3131142015 cites W2086971829 @default.
- W3131142015 cites W2092049851 @default.
- W3131142015 cites W2093913522 @default.
- W3131142015 cites W2099258606 @default.
- W3131142015 cites W2105717024 @default.
- W3131142015 cites W2117911059 @default.
- W3131142015 cites W2123378940 @default.
- W3131142015 cites W2127463464 @default.
- W3131142015 cites W2127617643 @default.
- W3131142015 cites W2140537761 @default.
- W3131142015 cites W2145687484 @default.
- W3131142015 cites W2150516565 @default.
- W3131142015 cites W2152345838 @default.
- W3131142015 cites W2157299819 @default.
- W3131142015 cites W2170944163 @default.
- W3131142015 cites W2207307278 @default.
- W3131142015 cites W2288422579 @default.
- W3131142015 cites W2312797919 @default.
- W3131142015 cites W2313049980 @default.
- W3131142015 cites W2326407270 @default.
- W3131142015 cites W2395012354 @default.
- W3131142015 cites W2433153259 @default.
- W3131142015 cites W2472474602 @default.
- W3131142015 cites W2551952424 @default.
- W3131142015 cites W2583676497 @default.
- W3131142015 cites W2623026738 @default.
- W3131142015 cites W2623448786 @default.
- W3131142015 cites W2626498087 @default.
- W3131142015 cites W2748156863 @default.
- W3131142015 cites W2786372360 @default.
- W3131142015 cites W2787470607 @default.
- W3131142015 cites W2795195714 @default.
- W3131142015 cites W2795609325 @default.
- W3131142015 cites W2795785212 @default.
- W3131142015 cites W2800770535 @default.
- W3131142015 cites W2808072342 @default.
- W3131142015 cites W2809483466 @default.
- W3131142015 cites W2821586886 @default.
- W3131142015 cites W2915988899 @default.
- W3131142015 cites W2924604135 @default.
- W3131142015 cites W2942914792 @default.
- W3131142015 cites W2978907583 @default.
- W3131142015 cites W2993002314 @default.
- W3131142015 cites W3007354625 @default.
- W3131142015 cites W3046591397 @default.
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- W3131142015 doi "https://doi.org/10.1016/j.cej.2021.129069" @default.
- W3131142015 hasPublicationYear "2021" @default.
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