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Highly crystalline sphere and rod-shaped TiO 2 nanoparticles: A facile route to bio-polymer grafting

机译:高度结晶的球体和棒状TiO 2纳米颗粒:生物聚合物接枝的便捷途径

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The goal of this report is to provide a versatile one step method based on UV irradiation in order to graft a bioactive polymer bearing sulfonate groups called poly(sodium styrene sulfonate) (polyNaSS) onto titanium nanoparticles (TiO2 NPs) through covalent bond. The synthetic approach consists in two steps: (1) fabrication of TiO2 nanocrystals with different shape and size by solvothermal method previous hydrolysis of titanium(IV)isopropoxide (TTIP) in the presence of benzyl alcohol (BzOH) and acetic acid (AcOH) at 180?°C, (2) TiO2 NPs were immersed in a solution of monomer bearing sulfonate group and were placed under UV irradiation to induce the formation of radical to initiate the polymerization of the monomer. To demonstrate the success of the procedure, modified nano-surfaces were characterized by different techniques including colorimetric method by complexation, ATR–FTIR and SEM (EDS). This approach is promising to develop bio-active polymer–TiO2 nanoparticles as carriers and further successful application in the field of regenerative-nanomedicine.
机译:本报告的目的是提供一种基于紫外线辐射的通用一步法,以便通过共价键将带有磺酸基的生物活性聚合物(称为聚(苯乙烯磺酸钠)(polyNaSS))接枝到钛纳米颗粒(TiO2 NPs)上。合成方法包括两个步骤:(1)通过溶剂热法制备具有不同形状和尺寸的TiO2纳米晶体,然后先在苯甲醇(BzOH)和乙酸(AcOH)存在下先水解异丙氧基钛(IV)在180℃下,将(2)TiO 2 NPs浸入带有磺酸盐基团的单体溶液中,并置于UV辐射下以诱导自由基的形成以引发单体的聚合。为了证明该方法的成功,采用不同的技术对改性的纳米表面进行了表征,包括通过络合比色法,ATR-FTIR和SEM(EDS)。这种方法有望开发生物活性聚合物-TiO2纳米颗粒作为载体,并在再生纳米医学领域进一步成功应用。

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