TY - JOUR
T1 - Yield stress-enabled microencapsulation of field responsive microparticle suspensions
AU - Wilson-Whitford, Samuel R.
AU - Roffin, Maria Chiara
AU - Gao, Jinghui
AU - Kaewpetch, Thitiporn
AU - Gilchrist, James F.
PY - 2023/12/21
Y1 - 2023/12/21
N2 - Try and encapsulate microparticles inside the cores of microcapsules and you will often find that particles adhere to the liquid–liquid interface in a phenomenon known as Pickering stabilization. Particles will remain irreversibly trapped and embedded within the subsequently formed microcapsule membrane. In cases where the encapsulant particles must remain suspended inside the microcapsule core to retain their desired properties or behaviours, Pickering stabilization is detrimental. Here we demonstrate a general procedure using yield stress materials as the core material, where the yield stress of the gel is strong enough to suspend particles against sedimentation, but weak enough to allow spatial manipulation of encapsulant particles using an external field. This external field imparts enough force on particles to disrupt the supporting network and allow particle mobility after encapsulation.
AB - Try and encapsulate microparticles inside the cores of microcapsules and you will often find that particles adhere to the liquid–liquid interface in a phenomenon known as Pickering stabilization. Particles will remain irreversibly trapped and embedded within the subsequently formed microcapsule membrane. In cases where the encapsulant particles must remain suspended inside the microcapsule core to retain their desired properties or behaviours, Pickering stabilization is detrimental. Here we demonstrate a general procedure using yield stress materials as the core material, where the yield stress of the gel is strong enough to suspend particles against sedimentation, but weak enough to allow spatial manipulation of encapsulant particles using an external field. This external field imparts enough force on particles to disrupt the supporting network and allow particle mobility after encapsulation.
UR - https://pubs.rsc.org/en/content/articlelanding/2023/sm/d3sm00642e
U2 - 10.1039/D3SM00642E
DO - 10.1039/D3SM00642E
M3 - Article
SN - 1744-683X
VL - 19
SP - 9139
EP - 9145
JO - Soft matter
JF - Soft matter
IS - 47
ER -