We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes for PDMS-based Organs-on-Chips (OOCs) using microelectromechanical systems (MEMS) fabrication technologies. Porous PDMS membranes with pore sizes down to 2.0 μm in diameter and a wide porosity range (2–65%) can be fabricated. To overcome issues normally faced when using replica moulding and extend the applicability to most OOCs and improve their scalability and reproducibility, the process includes a sacrificial layer to easily transfer the membranes from a silicon carrier to any PDMS-based OOC. The highly reliable fabrication and transfer method does not need of manual handling to define the pore features (size, distribution), allowing very t...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
\u3cp\u3eWe present a novel and highly reproducible process to fabricate transferable porous PDMS me...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
\u3cp\u3eWe present a novel and highly reproducible process to fabricate transferable porous PDMS me...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabri...