Controlling the Release of Amphiphilic Liposomes from Alginate Hydrogel Particles for Antifouling Paint.

Langmuir

School of Mechanical Engineering , Sungkyunkwan University, Suwon , Gyeonggi-do 16419 , Republic of Korea.

Published: February 2020

AI Article Synopsis

  • Scientists are trying to create a new type of paint that helps prevent stuff from sticking to surfaces without being toxic.
  • This new paint uses special tiny particles that can hold and slowly release little bubbles containing helpful chemicals.
  • The researchers tested different ways to control how fast these little bubbles are released to make the paint work better and be more environmentally friendly.

Article Abstract

As an alternative to the toxic antifouling paint that minimizes the adhesion force between organic molecules on large surfaces, a paint containing hydrogel particles encapsulating amphiphilic liposomes has been suggested. However, the release rate of liposomes, which is important for maximizing the antifouling performance, has not been adequately explored. We investigated the control of the release rate of liposomes encapsulated in alginate. Monodispersed alginate particles were generated using 3D-printed microfluidic devices, and their sizes were varied through the channel size, flow rate, and alginate concentration in the microfluidic devices ([Formula: see text]). The release rate of liposomes from the alginate particles was experimentally monitored under various conditions: alginate concentration, surrounding solution, and ambient fluid flow. The effects of chemical and mechanical stimuli on the effective diffusion coefficient () of amphiphilic liposomes were analyzed, and accordingly, the best production conditions for antifouling alginate particles are suggested. This study provides essential physical insights and is useful for optimizing the performance of eco-friendly antifouling paint that includes alginate particles.

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Source
http://dx.doi.org/10.1021/acs.langmuir.9b03415DOI Listing

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