Zhang Jiuyang, Yan Jing, Pageni Parasmani, Yan Yi, Wirth Adam, Chen Yun-Ping, Qiao Yali, Wang Qian, Decho Alan W, Tang Chuanbing
Department of Chemistry and Biochemistry, University of South Carolina, Columbia, South Carolina 29208, USA.
Department of Environmental Health Sciences, University of South Carolina, Columbia, South Carolina 29208, USA.
Sci Rep. 2015 Jul 23;5:11914. doi: 10.1038/srep11914.
Metallopolymers combine a processable, versatile organic polymeric skeleton with functional metals, providing multiple functions and methodologies in materials science. Taking advantage of cationic cobaltocenium as the key building block, organogels could be simply switched to hydrogels via a highly efficient ion exchange. With the unique ionic complexion ability, cobaltocenium moieties provide a robust soft substrate for recycling antibiotics from water. The essential polyelectrolyte nature offers the metallopolymer hydrogels to kill multidrug resistant bacteria. The multifunctional characteristics of these hydrogels highlight the potential for metallopolymers in the field of healthcare and environmental treatment.
金属聚合物将可加工的、多功能的有机聚合物骨架与功能性金属相结合,在材料科学中提供多种功能和方法。利用阳离子钴茂作为关键构建单元,有机凝胶可以通过高效离子交换简单地转变为水凝胶。钴茂部分具有独特的离子络合能力,为从水中回收抗生素提供了坚固的软基质。其本质的聚电解质性质使金属聚合物水凝胶能够杀死耐多药细菌。这些水凝胶的多功能特性凸显了金属聚合物在医疗保健和环境治理领域的潜力。