Related Experiment Video
Updated: Aug 5, 2026

Fabricating Reactive Surfaces with Brush-like and Crosslinked Films of Azlactone-Functionalized Block Co-Polymers
Published on: June 30, 2018
Recent advances in polymeric chemically amplified positive resists: Materials and design strategies
Litao Zhou1,2, Haoyuan Li1, Jianhua Zhang1
1School of Microelectronics Shanghai University Shanghai China.
Abstract:
Chemically amplified resists (CARs) are essential for advanced photolithography but face critical challenges at extreme ultraviolet (EUV) nodes, including the resolution-line-edge roughness-sensitivity (RLS) trade-off and low photon utilization. To provide theoretical guidance for the design of next-generation CARs, this review systematically discusses the molecular design of positive CARs, focusing on photoacid generators (PAGs), polymer architectures, functional monomers, and additives. We discuss PAG evolution from classical onium salts to polymer-bound and naphthalimide-based systems with tunable structure-property relationships, alongside polymer backbone strategies including styrenic, acrylate, norbornene, and self-immolative platforms. The roles of functional monomers and additives are also discussed. Emerging strategies to sensitize resists-self-amplification, controlled polymerization, copolymerization of sensitive monomers and photosensitized CARs-are comprehensively reviewed. Finally, current challenges, along with design strategies for each component of the photoresist, are summarized. This review provides a unified framework connecting molecular design to lithographic performance, serving as a resource for researchers and a roadmap for next-generation CAR development.
More Related Videos
04:32Quantitative Characterization of Liquid Photosensitive Bioink Properties for Continuous Digital Light Processing Based Printing
Published on: April 14, 2023
07:283D Printing and In Situ Surface Modification via Type I Photoinitiated Reversible Addition-Fragmentation Chain Transfer Polymerization
Published on: February 18, 2022