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Widely adaptable oil-in-water gel emulsions stabilized by an amphiphilic hydrogelator derived from dehydroabietic acid (2019)
Journal Article
Yan, T., Song, B., Pei, X., Cui, Z., Binks, B. P., & Yang, H. (2020). Widely adaptable oil-in-water gel emulsions stabilized by an amphiphilic hydrogelator derived from dehydroabietic acid. Angewandte Chemie, 59(2), 637-641. https://doi.org/10.1002/anie.201907774

A surfactant, R-6-AO, derived from dehydroabietic acid has been synthesized. It behaves as a highly efficient low-molecular-weight hydrogelator with an extremely low critical gelation concentration (CGC) of 0.18 wt % (4 mm). R-6-AO not only stabiliz... Read More about Widely adaptable oil-in-water gel emulsions stabilized by an amphiphilic hydrogelator derived from dehydroabietic acid.

Capsules from Pickering emulsion templates (2019)
Journal Article
Bago Rodriguez, A. M., & Binks, B. P. (2019). Capsules from Pickering emulsion templates. Current Opinion in Colloid and Interface Science, 44, 107-129. https://doi.org/10.1016/j.cocis.2019.09.006

Following the resurgence of interest in particle-stabilised or Pickering emulsions recently, the preparation of capsules from such templates has become feasible. We review some of the recent activity in this area and focus on both the methods used to... Read More about Capsules from Pickering emulsion templates.

Electrocoalescence of liquid marbles driven by embedded electrodes for triggering bioreactions (2019)
Journal Article
Binks, B. P., Zhang, Y., Fu, X., Guo, W., Deng, Y., & Shum, H. C. (2019). Electrocoalescence of liquid marbles driven by embedded electrodes for triggering bioreactions. Lab on a chip, 19(20), 3526-3534. https://doi.org/10.1039/c9lc00722a

Liquid marbles need to be controlled precisely to benefit applications, for instance, as microreactors on digital microfluidic platforms for chemical and biological assays. In this work, a strategy is introduced to coalesce liquid marbles via electro... Read More about Electrocoalescence of liquid marbles driven by embedded electrodes for triggering bioreactions.

Biphasic biocatalysis using a CO2-switchable Pickering emulsion (2019)
Journal Article
Yu, S., Zhang, D., Jiang, J., Cui, Z., Xia, W., Binks, B. P., & Yang, H. (2019). Biphasic biocatalysis using a CO2-switchable Pickering emulsion. Green chemistry : an international journal and green chemistry resource : GC, 21(15), 4062-4068. https://doi.org/10.1039/c8gc03879a

Biphasic biocatalyses such as the hydrolysis of olive oil and the esterification of octanol with oleic acid were performed in a CO2/N2-switchable Pickering oil-in-water emulsion stabilized by silica nanoparticles hydrophobized in situ by a CO2/N2-swi... Read More about Biphasic biocatalysis using a CO2-switchable Pickering emulsion.

Emulsions stabilized with polyelectrolyte complexes prepared from a mixture of a weak and a strong polyelectrolyte (2019)
Journal Article
Bago Rodriguez, A. M., Binks, B. P., & Sekine, T. (2019). Emulsions stabilized with polyelectrolyte complexes prepared from a mixture of a weak and a strong polyelectrolyte. Langmuir : the ACS journal of surfaces and colloids, 35(20), 6693-6707. https://doi.org/10.1021/acs.langmuir.9b00897

The possibility of stabilizing emulsions with polyelectrolyte complexes (PEC) obtained from the interaction of two non-surface-active oppositely charged polyelectrolytes (PEL) is described. Poly(allylamine hydrochloride) (PAH) and poly(4-styrene sulf... Read More about Emulsions stabilized with polyelectrolyte complexes prepared from a mixture of a weak and a strong polyelectrolyte.

Pickering emulsion-enhanced interfacial biocatalysis: tailored alginate microparticles act as particulate emulsifier and enzyme carrier (2019)
Journal Article
Yang, X., Wang, Y., Bai, R., Ma, H., Wang, W., Sun, H., Dong, Y., Qu, F., Tang, Q., Guo, T., Binks, B. P., & Meng, T. (2019). Pickering emulsion-enhanced interfacial biocatalysis: tailored alginate microparticles act as particulate emulsifier and enzyme carrier. Green chemistry : an international journal and green chemistry resource : GC, 21(9), 2229-2233. https://doi.org/10.1039/c8gc03573c

A robust Pickering emulsion stabilized by lipase-immobilized alginate gel microparticles with a coating of silanized titania nanoparticles is developed for biphasic biocatalysis. The good recyclability and high stability of the proposed interfacial c... Read More about Pickering emulsion-enhanced interfacial biocatalysis: tailored alginate microparticles act as particulate emulsifier and enzyme carrier.