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  4. Inkjetable and photo-curable resists for large-area and high-throughput roll-to-roll nanoimprint lithography
 
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2014
Journal Article
Title

Inkjetable and photo-curable resists for large-area and high-throughput roll-to-roll nanoimprint lithography

Abstract
We report on our development strategy of photo-curable resists for nanoimprint lithography (NIL) based on modularity. Starting with a basic formulation, we address two topics: the integration of fluorinated additives and the enhancement of the dry etching stability. We prove both concepts by the introduction of two different resists derived from the same basic formulation. The viscosity of the novel resist materials was optimized for inkjet dispensing at room temperature (RT). The novel resist materials can be applied either in NIL batch processes or in high-throughput roller processes. Batch-wise imprints were performed on various substrates such as Si or plastics, demonstrating the distinctive application versatility of the novel materials. Dry etching of spincoated thin films on Si wafers was performed, demonstrating an etch stability versus Si of 3.5:1 by using the resist formulation with improved etching stability. Roll-to-roll NIL at high throughput on large areas was performed with web speeds of up to 30 mmin−1 with different stamp materials. We conclude that all resists reported herein can be deposited via inkjet dispensing at RT, are suitable for continuous high-throughput imprinting on flexible substrates, and are applicable in step-wise NIL processes with good etch resistance in dry etch processes.
Author(s)
Thesen, M.W.
Microresist Technologies GmbH
Nees, D.
bJoanneum Research Materials, Institute for Surface Technologies and Photonics, Weiz
Ruttloff, S.
bJoanneum Research Materials, Institute for Surface Technologies and Photonics, Weiz
Rumler, Maximilian
Fraunhofer-Institut für Integrierte Systeme und Bauelementetechnologie IISB  
Rommel, Mathias  orcid-logo
Fraunhofer-Institut für Integrierte Systeme und Bauelementetechnologie IISB  
Schlachter, F.
AMO GmbH
Grützner, S.
Microresist Technologies GmbH
Vogler, M.
Microresist Technologies GmbH
Schleunitz, A.
Microresist Technologies GmbH
Grützner, G.
Microresist Technologies GmbH
Journal
Journal of micro/nanolithography, MEMS and MOEMS  
DOI
10.1117/1.JMM.13.4.043003
Language
English
Fraunhofer-Institut für Integrierte Systeme und Bauelementetechnologie IISB  
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