“…The viability of utilizing a photopolymerization reaction with microuidics to solidify polymer-based materials and mixtures has been investigated extensively by other groups. [48][49][50][51][52][53] Moreover, unlike the other standard microvessel devices, [36][37][38][39][40][41][42] our multiaxial microvessel system has been optimized by testing a variety of chevron dimensions under various ow rates.…”
Biocompatible and self-standing poly(ethylene glycol diacrylate)-based hollow microvessels were fabricated from a microfluidic device using microfluidic principles.
“…The viability of utilizing a photopolymerization reaction with microuidics to solidify polymer-based materials and mixtures has been investigated extensively by other groups. [48][49][50][51][52][53] Moreover, unlike the other standard microvessel devices, [36][37][38][39][40][41][42] our multiaxial microvessel system has been optimized by testing a variety of chevron dimensions under various ow rates.…”
Biocompatible and self-standing poly(ethylene glycol diacrylate)-based hollow microvessels were fabricated from a microfluidic device using microfluidic principles.
“…In this paper, the preparing process of the heat-sensitive microspheres with a 9.3 mol L À1 LiBr solution in wax shells is similar to that of the double emulsions based on microuidic technology. [23][24][25][26] The capillary microuidic device was assembled by coaxially aligning two cylindrical capillaries inside a square capillary, as shown in Fig. 2.…”
Silk fibroin-based transient devices were developed using LiBr/wax microspheres that mimic a silk cocoon protecting silkworm pupa and a juvenile moth secreting an enzyme to dissolve silk sericin and break a silk cocoon.
“…29 Apart from PCR, the chemical and biological reactions were simultaneously monitored effectively with different concentrations of reagent using the microuidics devices. 30 The present study aims to design stable and economic hybrid microuidic devices that can tolerate high temperature and pressure using robust bonding strategies between PDMS and thermoplastic materials. This technique is based on the surface modication of the materials to be bonded.…”
In this study, we have introduced a facile room-temperature strategy for irreversibly sealing polydimethylsiloxane to various thermoplastics using (3-aminopropyl)triethoxysilane (APTES) and [2-(3,4-epoxycyclohexyl)ethyl]trimethoxysilane (ECTMS).
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