首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Synthesis of highly surface functionalized monodispersed poly(St/DVB/GMA) nanospheres with soap-free emulsion polymerization followed by facile ' click chemistry' with functionalized alkylthiols
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Synthesis of highly surface functionalized monodispersed poly(St/DVB/GMA) nanospheres with soap-free emulsion polymerization followed by facile ' click chemistry' with functionalized alkylthiols

机译:无皂乳液聚合,然后用官能化的烷基硫醇轻松进行“点击化学”,合成高度表面官能化的单分散聚(St / DVB / GMA)纳米球

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摘要

Poly(St/DVB/GMA) nanospheres (PNs) were prepared by soap-free emulsion polymerization and the surfaces of the PNs were further functionalized by the thiol-epoxy " click-chemistry" of surface pendant epoxy groups with functional thiols. A variety of functional groups were successfully grafted to the PNs surfaces at high densities as exemplified by the reactions with 2-aminoethanethiol, thioglycolic acid, and 2-mercaptoethanol. All the reactions were easily controlled and the modified polymer nanospheres were well-dispersed in water. Very high surface charges were observed for the 2-aminoethanethiol and thioglycolic acid modified PNs in water, a manifestation of the high surface grafting densities of the ionizable groups. The adsorptions of acid orange and toluidine blue to, respectively, the 2-aminoethanethiol and thioglycolic acid functionalized PNs were examined, which fitted well to the Langmuir isotherm model. For the 2-aminoethanethiol modified PNs, the surface amino group density was found to be 1.1. mequiv/g, with an adsorption capacity of 398. mg/g of acid orange; while the thioglycolic acid modified PNs displayed 1.4. mequiv/g carboxylate groups and an adsorption capacity of 416. mg/g for toluidine blue. The new synthetic method appears to be general in scope and adaptive to a variety of surface functionalities and potential applications.
机译:通过无皂乳液聚合制备聚(St / DVB / GMA)纳米球(PNs),并通过具有功能性硫醇的表面侧基环氧基的硫醇-环氧“点击化学”进一步将PNs的表面官能化。各种官能团已成功以高密度接枝到PNs表面,例如与2-氨基乙硫醇,巯基乙酸和2-巯基乙醇的反应。所有反应均易于控制,并且改性的聚合物纳米球良好地分散在水中。对于2-氨基乙硫醇和巯基乙酸修饰的PNs,在水中观察到非常高的表面电荷,这是可电离基团的高表面接枝密度的体现。考察了酸性橙和甲苯胺蓝分别吸附到2-氨基乙硫醇和巯基乙酸官能化的PNs上的吸附情况,这与Langmuir等温模型非常吻合。对于2-氨基乙硫醇改性的PN,发现表面氨基基团密度为1.1。 mequiv / g,对酸性橙的吸附容量为398. mg / g;而巯基乙酸修饰的PN显示为1.4。 Mequiv / g羧酸根,对甲苯胺蓝的吸附容量为416. mg / g。新的合成方法似乎是通用的,并且适用于各种表面功能和潜在的应用。

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