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SAMs, Wetting, Materials-by-Design

Bibliographic References tagged with SAMs, Wetting, Materials-by-Design

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K. K. Berggren, R. Youkin, E. Cheung, M. G. Prentiss, A. J. Black, G. M. Whitesides, D. C. Ralph, C. T. Black, and M. Tinkham. 1997. “Demonstration of a Nanolithographic System Using a Self-Assembled Monolayer Resist for Neutral Atomic Cesium”. Advanced Materials, 9, Pp. 52-55
K. K. Berggren, R. Youkin, E. Cheung, M. G. Prentiss, A. J. Black, G. M. Whitesides, D. C. Ralph, C. T. Black, and M. Tinkham. 1997. “Demonstration of a Nanolithographic System Using a Self-Assembled Monolayer Resist for Neutral Atomic Cesium”. Advanced Materials, 9, Pp. 52-55
R. R. Seigel, P. Harder, R. Dahint, M. Grunze, F. Josse, M. Mrksich, and G. M. Whitesides. 1997. “On-Line Detection of Nonspecific Protein Adsorption at Artificial Surfaces”. Analytical Chemistry, 69, Pp. 3321-28
R. R. Seigel, P. Harder, R. Dahint, M. Grunze, F. Josse, M. Mrksich, and G. M. Whitesides. 1997. “On-Line Detection of Nonspecific Protein Adsorption at Artificial Surfaces”. Analytical Chemistry, 69, Pp. 3321-28
M. Mrksich and G. M. Whitesides. 1997. “Using Self-Assembled Monolayers That Present Oligo(ethylene Glycol) Groups To Control the Interactions of Proteins With Surfaces”. In Poly(ethylene Glycol) Chemistry and Biological Applications, edited by J. M. Harris and S. Zalipsky, 1st ed., Pp. 361-73. Washington, DC: American Chemical Society
M. Mrksich and G. M. Whitesides. 1997. “Using Self-Assembled Monolayers That Present Oligo(ethylene Glycol) Groups To Control the Interactions of Proteins With Surfaces”. In Poly(ethylene Glycol) Chemistry and Biological Applications, edited by J. M. Harris and S. Zalipsky, 1st ed., Pp. 361-73. Washington, DC: American Chemical Society
M. Mammen, I. J. Colton, J. D. Carbeck, R. Bradley, and G. M. Whitesides. 1997. “Representing Primary Electrophoretic Data in the 1 Time Domain: Comparison to Representations in the Time Domain”. Analytical Chemistry, 69, Pp. 2165-70
M. Mammen, I. J. Colton, J. D. Carbeck, R. Bradley, and G. M. Whitesides. 1997. “Representing Primary Electrophoretic Data in the 1 Time Domain: Comparison to Representations in the Time Domain”. Analytical Chemistry, 69, Pp. 2165-70
M. Mrksich, L. E. Dike, J. Tien, D. E. Ingber, and G. M. Whitesides. 1997. “Using Microcontact Printing to Pattern the Attachment of Mammalian Cells to Self-Assembled Monolayers of Alkanethiolates on Transparent Films of Gold and Silver”. Experimental Cell Research, 235, Pp. 305-13
M. Mrksich, L. E. Dike, J. Tien, D. E. Ingber, and G. M. Whitesides. 1997. “Using Microcontact Printing to Pattern the Attachment of Mammalian Cells to Self-Assembled Monolayers of Alkanethiolates on Transparent Films of Gold and Silver”. Experimental Cell Research, 235, Pp. 305-13
L. Yan, C. Marzolin, A. Terfort, and G. M. Whitesides. 1997. “Formation and Reaction of Interchain Carboxylic Anhydride Groups on Self-Assembled Monolayers on Gold”. Langmuir, 13, Pp. 6704-12
L. Yan, C. Marzolin, A. Terfort, and G. M. Whitesides. 1997. “Formation and Reaction of Interchain Carboxylic Anhydride Groups on Self-Assembled Monolayers on Gold”. Langmuir, 13, Pp. 6704-12
Y. Xia, E. Kim, M. Mrksich, and G. M. Whitesides. 1996. “Microcontact Printing of Alkanethiols on Copper and Its Application in Microfabrication”. Chem. Mat., 8, Pp. 601-3
Y. Xia, E. Kim, M. Mrksich, and G. M. Whitesides. 1996. “Microcontact Printing of Alkanethiols on Copper and Its Application in Microfabrication”. Chem. Mat., 8, Pp. 601-3
J. Tien, A. Terfort, and G. M. Whitesides. 1997. “Microfabrication Through Electrostatic Self-Assembly”. Langmuir, 13, Pp. 5349-55
J. Tien, A. Terfort, and G. M. Whitesides. 1997. “Microfabrication Through Electrostatic Self-Assembly”. Langmuir, 13, Pp. 5349-55