Geometry-driven mass transport dynamics within permeable 3D-microstructures fabricated via two-photon polymerization

Author:

Mhanna Rana1,Zhou Ruchun2,Jin Ming2ORCID,Pan Haiyan2ORCID,Wan Decheng2ORCID,Versace Davy-Louis3ORCID,Hobeika Nelly1,Khitous Amine1,Soppera Olivier1ORCID,Lamielle Patrick1,Malval Jean-Pierre1ORCID

Affiliation:

1. Institut de Science des Matériaux de Mulhouse, UMR CNRS 7361, Université de Haute Alsace, 15 rue Jean Starcky, Mulhouse, 68057, France

2. Department of Polymer Materials, School of Materials Science and Engineering, Tongji University, 4800 Caoan Road, Shanghai, 201804, P. R. China

3. Institut de Chimie et des Matériaux Paris-Est, UMR-CNRS 7182, Equipe Systèmes Polymères Complexes, 94320 Thiais, France

Abstract

We present an original fluorescence imaging strategy to spatially probe the real-time progress of a quenching reaction diffusing throughout permeable 3D-microstructures whose geometry and topology are modulated by two-photon stereolithography.

Funder

Data Center of Management Science, National Natural Science Foundation of China - Peking University

National Natural Science Foundation of China

Publisher

Royal Society of Chemistry (RSC)

Subject

Materials Chemistry,General Chemistry

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