The importance of chitosan has been strongly emphasized in literature because this natural polymer could not only remove heavy metal ions in water but also have the potential for recyclability. However, reversible phase transition and its dynamics, which are highlighting areas of a recycle process, have not been studied sufficiently. Here, we present dynamic studies of the dissolution as well as the gelation of a physically crosslinked chitosan hydrogel. Specifically, a one-dimensional gel growth system and an acetate buffer solution were prepared for the precise analysis of the dominant factors affecting a phase transition. The dissolution rate was found to be regulated by three major factors of the pH level, Cu(2+), and NO(2) (-), while the gelation rate was strongly governed by the concentration of OH(-). Apart from the gelation rate, the use of Cu(2+) led to the rapid realization of gel characteristics. The results here provide strategies for process engineering, ultimately to determine the phase-transition rates. In addition, a microfluidic switch was successfully operated based on a better understanding of the reversible crosslinking of the chitosan hydrogel. Rapid gelation was required to close the channel, and a quick switchover was achieved by a dissolution enhancement strategy. As a result, factors that regulated the rates of gelation or dissolution were found to be useful to operate the fluidic switch.
Reversible Crosslinking of Polymer/Metal-Ion Complexes for a Microfluidic Switch.
阅读:3
作者:Lee Hojun, Kang Soon-Bo, Yoo Hyunjae, Lee Hae-Ryung, Sun Jeong-Yun
| 期刊: | ACS Omega | 影响因子: | 4.300 |
| 时间: | 2021 | 起止号: | 2021 Dec 14; 6(51):35297-35306 |
| doi: | 10.1021/acsomega.1c04055 | ||
特别声明
1、本页面内容包含部分的内容是基于公开信息的合理引用;引用内容仅为补充信息,不代表本站立场。
2、若认为本页面引用内容涉及侵权,请及时与本站联系,我们将第一时间处理。
3、其他媒体/个人如需使用本页面原创内容,需注明“来源:[生知库]”并获得授权;使用引用内容的,需自行联系原作者获得许可。
4、投稿及合作请联系:info@biocloudy.com。
