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Autor:
Jurriaan Huskens, Vinod Subramaniam, Stefano Sforza, Geertruida A. Posthuma-Trumpie, Aart van Amerongen, Rosangela Marchelli, Roberto Corradini, Tullia Tedeschi, Pascal Jonkheijm, David N. Reinhoudt, Dorothee Wasserberg, Alessandro Calabretta
Publikováno v:
Langmuir, 27, 1536-42
Langmuir, 27, 4, pp. 1536-42
Langmuir, 27(4), 1536-42. American Chemical Society
Calabretta, A, Wasserberg, D, Posthuma-Trumpie, G A, Subramaniam, V, van Amerongen, A, Corradini, R, Tedeschi, T, Sforza, S, Reinhoudt, D N, Marchelli, R, Huskens, J & Jonkheijm, P 2011, ' Patterning of peptide nucleic acids using reactive microcontact printing ', Langmuir, vol. 27, no. 4, pp. 1536-42 . https://doi.org/10.1021/la102756k
Langmuir, 27(4), 1536-1542
Langmuir 27 (2011) 4
Langmuir, 27(4), 1536-1542. American Chemical Society
Langmuir, 27, 4, pp. 1536-42
Langmuir, 27(4), 1536-42. American Chemical Society
Calabretta, A, Wasserberg, D, Posthuma-Trumpie, G A, Subramaniam, V, van Amerongen, A, Corradini, R, Tedeschi, T, Sforza, S, Reinhoudt, D N, Marchelli, R, Huskens, J & Jonkheijm, P 2011, ' Patterning of peptide nucleic acids using reactive microcontact printing ', Langmuir, vol. 27, no. 4, pp. 1536-42 . https://doi.org/10.1021/la102756k
Langmuir, 27(4), 1536-1542
Langmuir 27 (2011) 4
Langmuir, 27(4), 1536-1542. American Chemical Society
Item does not contain fulltext PNAs (peptide nucleic acids) have been immobilized onto surfaces in a fast, accurate way by employing reactive microcontact printing. Surfaces have been first modified with aldehyde groups to react with the amino end of