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首页> 外文期刊>Colloid & Polymer Science >Preparation of thermosensitive PNIPAM microcontainers and a versatile method to fabricate PNIPAM shell on particles with silica surface
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Preparation of thermosensitive PNIPAM microcontainers and a versatile method to fabricate PNIPAM shell on particles with silica surface

机译:PNIPAM热敏微容器的制备以及在带有二氧化硅表面的颗粒上制备PNIPAM壳的通用方法

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Thermosensitive PNIPAM microcontainers were prepared by using silica particles as template. Silica particles were prepared by the Stöber method and surface modified with linear P(NIPAM-co-MPS) chains. PNIPAM shell was then fabricated on the P(NIPAM-co-MPS)-modified silica particles through precipitation polymerization of NIPAM and MBA. Finally, PNIPAM microcontainers were obtained by removing the silica cores with NaOH. The materials were characterized by TEM, FTIR, GPC, and DLS. The PNIPAM microcontainers exhibit good thermosensitivity. The method to fabricate thermosensitive PNIPAM shell can be generalized to a versatile method for preparing PNIPAM shell on particles with silica surface, which includes surface modification with P(NIPAM-co-MPS) and precipitation polymerization of NIPAM and MBA using the modified particles as seed. Through this method, PNIPAM shell was successfully fabricated on iron oxide/silica nanostructures with a wormlike shape and relatively large size, which demonstrates the versatility of the method.
机译:以二氧化硅颗粒为模板制备了热敏PNIPAM微容器。二氧化硅颗粒通过Stöber方法制备,并用线性P(NIPAM-co-MPS)链进行表面改性。然后,通过NIPAM和MBA的沉淀聚合,在P(NIPAM-co-MPS)改性的二氧化硅颗粒上制备PNIPAM壳。最后,通过用NaOH去除二氧化硅核,获得PNIPAM微容器。通过TEM,FTIR,GPC和DLS对材料进行了表征。 PNIPAM微容器显示出良好的热敏性。制备热敏PNIPAM壳的方法可以推广到在具有二氧化硅表面的颗粒上制备PNIPAM壳的通用方法,该方法包括用P(NIPAM-co-MPS)进行表面改性,以及使用改性颗粒作为种子对NIPAM和MBA进行沉淀聚合。 。通过该方法,成功地在蠕虫状且尺寸较大的氧化铁/二氧化硅纳米结构上制备了PNIPAM壳,这证明了该方法的多功能性。

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