Daniel R. Hines, Ph.D.

Institution:
University of Maryland, College Park, College Park, MD
Area:
Nanostructures
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"Daniel Hines"
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Parents

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Ellen D. Williams grad student 2007 University of Maryland
 (Organic electronics with polymer dielectrics on plastic substrates fabricated via transfer printing.)
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Publications

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Lock EH, Delongchamp DM, Schmucker SW, et al. (2015) Dry graphene transfer print to polystyrene and ultra-high molecular weight polyethylene - Detailed chemical, structural, morphological and electrical characterization Carbon. 86: 288-300
Sangwan V, Ballarotto V, Hines D, et al. (2014) Corrigendum to “Controlled growth, patterning and placement of carbon nanotube thin films” [Solid-State Electron. 54 (2010) 1204–1210] Solid-State Electronics. 93: 66
Bavier J, Cumings J, Hines DR. (2013) Transfer printing of patterned metal films using parylene C coated surfaces Microelectronic Engineering. 104: 18-21
Lock EH, Baraket M, Laskoski M, et al. (2012) High-quality uniform dry transfer of graphene to polymers. Nano Letters. 12: 102-7
Fox A, Hines DR, Li T. (2012) Probing the adhesion of submicron thin films fabricated on a polymer substrate via nano-transfer printing Journal of Micromechanics and Microengineering. 22
Huang J, Hines DR, Jung BJ, et al. (2011) Polymeric semiconductor/graphene hybrid field-effect transistors Organic Electronics: Physics, Materials, Applications. 12: 1471-1476
Sangwan VK, Southard A, Moore TL, et al. (2011) Transfer printing approach to all-carbon nanoelectronics Microelectronic Engineering. 88: 3150-3154
Sangwan VK, Ballarotto VW, Hines DR, et al. (2010) Controlled growth, patterning and placement of carbon nanotube thin films Solid-State Electronics. 54: 1204-1210
Tucker MB, Hines DR, Li T. (2009) A quality map of transfer printing Journal of Applied Physics. 106
Tunnell AJ, Ballarotto VW, Hines DR, et al. (2008) Vertical integration on plastic substrates using transfer printing Applied Physics Letters. 93
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