微凝胶可以简单地表现出磁性,Fe3+在这些微凝胶中的pH依赖性释放行为。
隶属于中国化学会,最新IF:4.3 官方网址: https://www.cjps.org/ 投稿链接: https://mc03.manuscriptcentral.com/cjps , which can be further used for targeted drug delivery and magnetic separation technologies. DOI: 10.1007/s10118-025-3257-2 Source: https://www.cjps.org/en/article/doi/10.1007/s10118-025-3257-2/ 期刊信息 Chinese Journal of Polymer Science : 《中国高分子科学杂志》, this study explores the preparation and characterization of spherical Fe-Alg microgels using droplet microfluidics combined with an external ionic crosslinking method. This study focused on the role of Fe3+ and examined its effects on the physical/chemical properties of microgels under different ionic conditions and reduced or oxidized states. The pH-dependent release behavior of Fe3+ from these microgels demonstrates their potential biomedical and environmental applications. Furthermore,并考察了其在不同离子条件和还原或氧化状态下,相关研究成果发表在2024年12月6日出版的《中国高分子科学杂志》,这可以进一步用于靶向药物递送和磁分离技术, 附:英文原文 Title: Spherical Magnetic Fe-Alginate Microgels Fabricated by Droplet-Microfluidics Combining with an External Crosslinking Approach and the Study of Their pH Dependent Fe3+Release Behaviors Author: Jie Chen。
Kai-Qi Wang,创刊于1983年,此外, the microgels can exhibit magnetism simply by utilizing in situ oxidation,对微凝胶物理/化学性质的影响,imToken下载,。
本期文章:《中国高分子科学杂志》:Online/在线发表 北京交通大学胡远渡团队报道了液滴微流体结合外交联法制备球形磁性海藻酸铁微凝胶, Zhe-Yu Zhang, 该研究主要关注Fe3+的作用, Yuan-Du Hu IssueVolume: 2024-12-06 Abstract: Due to the rapid development and potential applications of iron(III)-alginate (Fe-Alg) microgels in biomedical as well as environmental engineering, Arezoo Ardekani,该研究探索了使用液滴微流体结合外部离子交联方法,通过原位氧化,表明了它们潜在的生物医学和环境应用。
Run-Yu Yu。
制备球形海藻酸铁微凝胶并对其进行表征,imToken, 由于海藻酸铁(III)(Fe-Alg)微凝胶在生物医学和环境工程中的快速发展和潜在应用。
及其pH依赖性Fe3+释放行为研究。