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Facile Fabrication Of Novel Cyclomatrix-type Polyphosphazene Nanotubes With Active Hydroxyl Groups Via An In Situ Template Approach

机译:通过原位模板方法轻松制备具有活性羟基的新型Cyclomatrix型聚磷腈纳米管

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Novel polyphosphazene nanotubes with active hydroxyl groups were fabricated via an in situ template approach under ultrasonic irradiation. SEM and TEM results indicated that the nanotubes were uniform with length of several micrometers, inner diameter of ca. 20 nm and outer diameter of 60-80 nm. FTIR spectra revealed that the content of the hydroxyl groups on the nanotube surface was dependent on the feed ratio of hexachlorocyclotriphosphazene (HCCP) to 4,4'-sulfonyldiphenol. The successful esterifica-tion of polymer nanotubes with benzoxy chloride demonstrated the high reactivity of the hydroxyl groups. The method employed here might provide a simple and effective way to prepare functional nanotubes used for biological applications.
机译:通过原位模板方法在超声辐射下制备了具有活性羟基的新型聚磷腈纳米管。 SEM和TEM结果表明,纳米管是均匀的,长度为几微米,内径约为1微米。 20 nm,外径为60-80 nm。 FTIR光谱表明,纳米管表面上羟基的含量取决于六氯环三磷腈(HCCP)与4,4'-磺酰基二酚的进料比。聚合物纳米管与苯甲酰氯的成功酯化表明羟基的高反应活性。此处采用的方法可能提供一种简单有效的方法来制备用于生物学应用的功能性纳米管。

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