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Dive into the research topics where Mohammed J. Nasrullah is active.

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Proceedings of SPIE, the International Society for Optical Engineering | 2006

Poly(4-(1-hydroxyalkyl)styrene based photoresist materials: design, synthesis, and their lithographic performance

Mohammed J. Nasrullah; R. Dhamodharan

Several synthetic approaches are available to make photoresist polymers for deep UV (DUV) lithography. Two approaches were widely used in semiconductor manufacturing: i) direct polymerization of corresponding monomers by (controlled) radical, (living) ionic polymerization ii) thermal or chemical catalyzed deprotection or protection of the macromolecules. The latter approach which is also called polymer modification chemistry (PMC) or polymer analogous chemistry offers several advantageous over the direct polymerization approach. In this presentation, we will provide an overview on the preparation and basic lithographically important characterization of new polymers based on poly(4-(1-hydroxyalkyl)styrene-co-styrene) [Poly(4-HAS-co-S)]. These polymers were synthesized for the first time by PMC and this methodology is an simple alternative for the synthesis of poly(4-HAS-co-S) than conventionally used synthetically challenging free radical or low temperature anionic polymerization of the protected monomer. We have synthesized high and low molecular weight (Mn) polymers with mole fraction of functional group ranging from partial to complete functionalization. Several formulations based on poly(4-HAS-co-S) were developed and tested for negative tone imaging at DUV lithography. Lithographic performance of these polymers at DUV lithography will be compared with their molecular weight and mole fraction of functional groups.


Macromolecules | 2007

Synthesis and Characterization of Novel Epoxy-and Oxetane : Functional Reversible Addition-Fragmentation Chain Transfer Agents

Ankit Vora; Mohammed J. Nasrullah; Dean C. Webster


Macromolecular Chemistry and Physics | 2011

Block Copolymer Synthesis via a Combination of ATRP and RAFT Using Click Chemistry

Mohammed J. Nasrullah; Ankit Vora; Dean C. Webster


Journal of Coatings Technology and Research | 2010

Novel tailor-made diols for polyurethane coatings using a combination of controlled radical polymerization, ring opening polymerization, and click chemistry

Ankit Vora; Mohammed J. Nasrullah; Dean C. Webster


Macromolecular Chemistry and Physics | 2009

Parallel Synthesis of Polymer Libraries Using Atom Transfer Radical Polymerization (ATRP)

Mohammed J. Nasrullah; Dean C. Webster


Journal of Coatings Technology and Research | 2009

Automated parallel polyurethane dispersion synthesis and characterization

Mohammed J. Nasrullah; James Bahr; Christy Gallagher-Lein; Dean C. Webster; Richard R. Roesler; Peter D. Schmitt


Archive | 2009

Zwitterionic/amphiphilic pentablock copolymers and coatings therefrom

Dean C. Webster; Robert J. Pieper; Mohammed J. Nasrullah


Archive | 2006

POLYMERIZATION OF STYRENE AND t-BUTYL ACRYLATE BY ATOM TRANSFER RADICAL POLYMERIZATION - HIGH THROUGHPUT APPROACH

Mohammed J. Nasrullah; Dean C. Webster


Archive | 2007

SYNTHESIS AND CHARACTERIZATION OF POLYURETHANE DISPERSIONS BY TRADITIONAL AND AUTOMATED METHODS

Mohammed J. Nasrullah; Richard R. Roesler; Peter D. Schmitt; Alun Pryce James; Christy Gallagher-Lein


PacifiChem, Honolulu, HI, December 13-19, 2010 | 2010

MaterialsSemicrystallineCopolyamidesBased on the Renewable Monomer, 1,9-Nonane Diamine

Alex Kugal; Jie He; James Bahr; Mohammed J. Nasrullah; Bret J. Chisholm

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Dean C. Webster

North Dakota State University

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Ankit Vora

North Dakota State University

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James Bahr

North Dakota State University

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Bret J. Chisholm

North Dakota State University

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Jie He

North Dakota State University

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Robert J. Pieper

North Dakota State University

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