TY - JOUR
T1 - One step fabrication of mesh-reinforced hierarchic perforated microporous honeycomb films with tunable filtering property
AU - Kamei, Jun
AU - Yabu, Hiroshi
N1 - Funding Information:
This work has been partially supported by JSPS KAKENHI (No. 17H01223, 16K14701). H. Y. thank Ms Minori Suzuki, WPI-AIMR, Tohoku University, for helping with the honeycomb film preparation and particle filtration experiment.
Publisher Copyright:
© 2017 The Royal Society of Chemistry.
PY - 2017
Y1 - 2017
N2 - Highly ordered porous films whose pore size ranges from submicron to micron scale have always been an extensive area of research due to their broad range of application to photonic crystals, cell culturing scaffolds, filtration and separation membranes, just to name a few. However, the fragile nature of such a functional porous film has hindered its implementation to advanced uses. Inspired by the hierarchic structure in nature which offers both robustness and functionality, we created in a single fabrication step a mesh-reinforced hierarchic perforated honeycomb film with highly ordered micron pores using the breath figure method. By using the elastomer 1,2-polybutadiene as the material for the film in the combination of the mesh grid, the pore size of the obtained film can be tuned upon stretching. Tubular structures made from the mesh-reinforced hierarchic perforated porous honeycomb film with tunable pore size have been demonstrated.
AB - Highly ordered porous films whose pore size ranges from submicron to micron scale have always been an extensive area of research due to their broad range of application to photonic crystals, cell culturing scaffolds, filtration and separation membranes, just to name a few. However, the fragile nature of such a functional porous film has hindered its implementation to advanced uses. Inspired by the hierarchic structure in nature which offers both robustness and functionality, we created in a single fabrication step a mesh-reinforced hierarchic perforated honeycomb film with highly ordered micron pores using the breath figure method. By using the elastomer 1,2-polybutadiene as the material for the film in the combination of the mesh grid, the pore size of the obtained film can be tuned upon stretching. Tubular structures made from the mesh-reinforced hierarchic perforated porous honeycomb film with tunable pore size have been demonstrated.
UR - http://www.scopus.com/inward/record.url?scp=85033464423&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=85033464423&partnerID=8YFLogxK
U2 - 10.1039/c7sm01411b
DO - 10.1039/c7sm01411b
M3 - Article
C2 - 29063095
AN - SCOPUS:85033464423
SN - 1744-683X
VL - 13
SP - 7834
EP - 7839
JO - Soft Matter
JF - Soft Matter
IS - 43
ER -