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Multicomponent Physical Vapor Deposited Films with Homogeneous Molecular Material Distribution Featuring Improved Resist Sensitivity
Authors:Tristan Kolb  Christian Neuber  Marie Krysak  Christopher K. Ober  Hans‐Werner Schmidt
Affiliation:1. Macromolecular Chemistry I, Bayreuth Institute of Macromolecular Research (BIMF), University of Bayreuth 95440 Bayreuth, Germany;2. Department of Materials Science, Cornell University, Ithaca, New York 14853, USA
Abstract:Each film preparation technique affects the physical properties of the resulting coating and thus defines its applicability in modern device construction. In this context solvent based spin coated and solvent‐free physical vapor deposited molecular glass photoresist films are systematically investigated for their dissolution behavior, sensitivity, and overall lithographic performance. These investigations demonstrate that the solvent‐free physical vapor deposition leads to a marked increase in sensitivity. This could be explained by the individual molecule by molecule deposition step producing a more homogeneous distribution of the multicomponent resist system, especially the photoacid generator. In addition, this assumption is supported by former published simulations focusing on aggregate formation within thin films. This work demonstrates that the lithographic sensitivity of multicomponent resist system is an intrinsic parameter to investigate molecular material distribution and indicates that the applied film preparation technique is crucial for the corresponding performance and applicability.
Keywords:homogeneous molecular material distribution  physical vapor deposition  thin films  electron beam lithography  molecular glass photoresists
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