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Soft Lithography

Bibliographic References tagged with Soft Lithography

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J. Hu, R. G. Beck, T. Deng, R. M. Westervelt, K. D. Maranowski, A. C. Gossard, and G. M. Whitesides. 1997. “Using Soft Lithography to Fabricate GaAs AlGaAs Heterostructure Field Effect Transistors”. Applied Physics Letters, 71, Pp. 2020-22
J. Hu, R. G. Beck, T. Deng, R. M. Westervelt, K. D. Maranowski, A. C. Gossard, and G. M. Whitesides. 1997. “Using Soft Lithography to Fabricate GaAs AlGaAs Heterostructure Field Effect Transistors”. Applied Physics Letters, 71, Pp. 2020-22
O. J. A. Schueller, S. T. Brittain, and G. M. Whitesides. 1997. “Fabrication of Glassy Carbon Microstructures by Pyrolysis of Microfabricated Polymeric Precursors”. Advanced Materials, 9, Pp. 477-80
O. J. A. Schueller, S. T. Brittain, and G. M. Whitesides. 1997. “Fabrication of Glassy Carbon Microstructures by Pyrolysis of Microfabricated Polymeric Precursors”. Advanced Materials, 9, Pp. 477-80
J. A. Rogers, K. E. Paul, R. J. Jackman, and G. M. Whitesides. 1997. “Using an Elastomeric Phase Mask for Sub-100 Nm Photolithography in the Optical Near Field”. Applied Physics Letters, 70, Pp. 2658-60
J. A. Rogers, K. E. Paul, R. J. Jackman, and G. M. Whitesides. 1997. “Using an Elastomeric Phase Mask for Sub-100 Nm Photolithography in the Optical Near Field”. Applied Physics Letters, 70, Pp. 2658-60
D. Wang, S. G. Thomas, K. L. Wang, Y. Xia, and G. M. Whitesides. 1997. “Nanometer Scale Patterning and Pattern Transfer on Amorphous Si, Crystalline Si, and SiO2 Surfaces Using Self-Assembled Monolayers”. Applied Physics Letters, 70, Pp. 1593-95
D. Wang, S. G. Thomas, K. L. Wang, Y. Xia, and G. M. Whitesides. 1997. “Nanometer Scale Patterning and Pattern Transfer on Amorphous Si, Crystalline Si, and SiO2 Surfaces Using Self-Assembled Monolayers”. Applied Physics Letters, 70, Pp. 1593-95
J. Aizenberg, J. A. Rogers, K. E. Paul, and G. M. Whitesides. 1997. “Imaging the Irradiance Distribution in the Optical Near Field”. Applied Physics Letters, 71, Pp. 3773-75
J. Aizenberg, J. A. Rogers, K. E. Paul, and G. M. Whitesides. 1997. “Imaging the Irradiance Distribution in the Optical Near Field”. Applied Physics Letters, 71, Pp. 3773-75
D. Qin, Y. Xia, and G. M. Whitesides. 1997. “Elastomeric Light Valves”. Advanced Materials, 9, Pp. 407-10
D. Qin, Y. Xia, and G. M. Whitesides. 1997. “Elastomeric Light Valves”. Advanced Materials, 9, Pp. 407-10
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
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
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