Devices and Structures
Bibliographic References tagged with Devices and Structures
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E. Kim, Y. Xia, X-M. Zhao, and G. M. Whitesides. 1997. “Solvent-Assisted Microcontact Molding: A Convenient Method for Fabricating Three-Dimensional Structures on Surfaces of Polymers”. Advanced Materials, 9, Pp. 651-54
E. Kim, Y. Xia, X-M. Zhao, and G. M. Whitesides. 1997. “Solvent-Assisted Microcontact Molding: A Convenient Method for Fabricating Three-Dimensional Structures on Surfaces of Polymers”. Advanced Materials, 9, Pp. 651-54
E. Kim, G. M. Whitesides, L. K. Lee, S. P. Smith, and M. G. Prentiss. 1996. “Fabrication of Arrays of Channel Waveguides by Three-Dimensional Self-Assembly Using Patterned Organic Monolayers As Templates”. Adv. Mat., 8, Pp. 139-42
E. Kim, G. M. Whitesides, L. K. Lee, S. P. Smith, and M. G. Prentiss. 1996. “Fabrication of Arrays of Channel Waveguides by Three-Dimensional Self-Assembly Using Patterned Organic Monolayers As Templates”. Adv. Mat., 8, Pp. 139-42
D. C. Duffy, O. J. A. Schueller, S. T. Brittain, and G. M. Whitesides. 1999. “Rapid Prototyping of Microfluidic Switches in Poly(dimethyl Siloxane) and Their Actuation by Electroosmotic Flow”. J. Micromechan. Microeng., 9, Pp. 211-17
D. C. Duffy, O. J. A. Schueller, S. T. Brittain, and G. M. Whitesides. 1999. “Rapid Prototyping of Microfluidic Switches in Poly(dimethyl Siloxane) and Their Actuation by Electroosmotic Flow”. J. Micromechan. Microeng., 9, Pp. 211-17
M. Trau, N. Yao, E. Kim, Y. Xia, G. M. Whitesides, and I. A. Aksay. 1997. “Microscopic Patterning of Oriented Mesocopic Silica through Guided Growth”. Nature, 390, Pp. 674-76
M. Trau, N. Yao, E. Kim, Y. Xia, G. M. Whitesides, and I. A. Aksay. 1997. “Microscopic Patterning of Oriented Mesocopic Silica through Guided Growth”. Nature, 390, Pp. 674-76
D. Qin, Y. Xia, and G. M. Whitesides. 1996. “Rapid Prototyping of Complex Structures With Feature Sizes Larger Than 20 µm”. Advanced Materials, 8, Pp. 917-19
D. Qin, Y. Xia, and G. M. Whitesides. 1996. “Rapid Prototyping of Complex Structures With Feature Sizes Larger Than 20 µm”. Advanced Materials, 8, Pp. 917-19
N. L. Jeon, I. S. Choi, B. Xu, and G. M. Whitesides. 1999. “Large-Area Patterning by Vacuum-Assisted Micromolding”. Advanced Materials, 11, Pp. 946-50
N. L. Jeon, I. S. Choi, B. Xu, and G. M. Whitesides. 1999. “Large-Area Patterning by Vacuum-Assisted Micromolding”. Advanced Materials, 11, Pp. 946-50
J. A. Rogers, R. J. Jackman, G. M. Whitesides, D. L. Olson, and J. V. Sweedler. 1997. “Using Microcontact Printing to Fabricate Microcoils on Capillaries for High Resolution Proton Nuclear Magnetic Resonance on Nanoliter Volumes”. Applied Physics Letters, 70, Pp. 2464-66
J. A. Rogers, R. J. Jackman, G. M. Whitesides, D. L. Olson, and J. V. Sweedler. 1997. “Using Microcontact Printing to Fabricate Microcoils on Capillaries for High Resolution Proton Nuclear Magnetic Resonance on Nanoliter Volumes”. Applied Physics Letters, 70, Pp. 2464-66
Y. Xia, X-M. Zhao, and G. M. Whitesides. 1996. “Pattern Transfer: Self-Assembled Monolayers As Ultrathin Resists”. Microelec. Eng., 32, Pp. 255-68
Y. Xia, X-M. Zhao, and G. M. Whitesides. 1996. “Pattern Transfer: Self-Assembled Monolayers As Ultrathin Resists”. Microelec. Eng., 32, Pp. 255-68
P. J. A. Kenis, R. F. Ismagilov, and G. M. Whitesides. 1999. “Microfabrication Inside Capillaries Using Multiphase Laminar Flow Patterning”. Science, 285, Pp. 83-85
P. J. A. Kenis, R. F. Ismagilov, and G. M. Whitesides. 1999. “Microfabrication Inside Capillaries Using Multiphase Laminar Flow Patterning”. Science, 285, Pp. 83-85
O. J. A. Schueller, S. T. Brittain, C. Marzolin, and G. M. Whitesides. 1997. “Fabrication and Characterization of Glassy Carbon MEMS”. Chem. Mat., 9, Pp. 1399-1406
O. J. A. Schueller, S. T. Brittain, C. Marzolin, and G. M. Whitesides. 1997. “Fabrication and Characterization of Glassy Carbon MEMS”. Chem. Mat., 9, Pp. 1399-1406