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Updated: Jul 10, 2026

Fabrication of Large-area Free-standing Ultrathin Polymer Films
Published on: June 3, 2015
Visible-Light-Driven Sustainable Chemical Vapor Deposition of Polymer Films and Patterns
Yuanhao Shen1,2, Xinlei He1,2, Wenjun Meng1,2
1State Key Laboratory of Chemical Engineering and Low-carbon Technology, College of Chemical and Biological Engineering, Zhejiang University, 866 Yuhangtang Rd, Hangzhou, 310058, China.
None:
Hazardous waste generation in nanomanufacturing is raising serious environmental concerns and increasing the demand for energy and resources for emission control. Although the vapor-phase deposition of nanoscale coatings possesses a solvent-free advantage, recycling precursors from the complex composition in the exhaust is still formidable. Here, a visible-light-driven chemical vapor deposition method is proposed, which allows initiator-free polymer deposition with facile monomer recovery. The photocatalytic radical generation is confined at the monomer/semiconductor interface, maintaining unreacted monomers intact under 420 nm irradiation. Multilayer monomer adsorption conditions are also employed to inhibit the desorption of radical species. Thereby, high-purity monomer can be recycled from the exhaust by condensation with an outstanding recovery rate of 96.28%. Furthermore, this deposition method is demonstrated for synthesizing effective anticorrosion coatings and fabricating self-aligned patterns with an area selectivity of 97.4%. This work provides insights for guiding the design of eco-friendly deposition methods and paves the way to sustainable nanomanufacturing.

