首页> 外文期刊>Journal of Nanoparticle Research >Facile synthesis of titania/hyperbranched polyglycidol nanohybrids with controllable morphologies: from solid spheres, capsules to tubes
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Facile synthesis of titania/hyperbranched polyglycidol nanohybrids with controllable morphologies: from solid spheres, capsules to tubes

机译:容易合成形态可控的二氧化钛/超支化聚缩水甘油纳米杂化物:从固体球,胶囊到试管

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Titania/Hyperbranched polyglycidol (HBP) nanohybrids with tunable morphologies have been synthesized via a sol–gel process at ambient temperature. One-shot addition of varied amounts of titanium precursor tetraisopropoxide (TTIP) yields spherical titania/HBP solid particles with tunable size, while a controlled addition of TTIP results in spherical titania/HBP capsules. The average outer and inner diameters of the resultant capsules are also controllable according to the amount of TTIP via an Oswald ripening process. In addition, the modality of additional water supplied in the reaction systems can tune the morphologies of the resulting titania/HBP particles from nanocapsules to nanotubes owing to the accelerated hydrolysis rate of TTIP. The tunability in morphologies of the titania/HBP nanostructures ranging from solid spheres, capsules to tubes could be attributed to the self-assembly of a large amount of titania/HBP aggregates in a rapid, controlled and anisotropic manner, respectively. Surprisingly, by means of HBP contained in the resulting titania/HBP nanostructures, the gold nanoparticles are in situ generated and encapsulated into titania/HBP matrix in the absence of additional reducing agent. The as-prepared gold nanoparticles functionalized titania/HBP hybrids exhibit excellent catalytic function toward the reduction of 4-nitrophenol. This strategy demonstrates a typical example for functionalizing the titania/HBP hybrids targeted to specific applications.
机译:二氧化钛/超支化聚缩水甘油(HBP)纳米杂化物具有可调谐的形态,已通过溶胶-凝胶法在室温下合成。一次性添加各种数量的钛前体四异丙醇(TTIP),可制得大小可调的球形二氧化钛/ HBP固体颗粒,而受控添加TTIP则可形成球形二氧化钛/ HBP胶囊。所得胶囊的平均外径和内径也可以通过奥斯瓦尔德熟化工艺根据TTIP的量来控制。另外,由于TTIP的加速水解,在反应系统中供应的额外水的形态可以将所得的二氧化钛/ HBP颗粒的形态从纳米胶囊改变为纳米管。二氧化钛/ HBP纳米结构从固体球,胶囊到试管的形貌可调谐性可以归因于大量二氧化钛/ HBP聚集体以快速,受控和各向异性的方式自组装。令人惊讶地,借助于所得二氧化钛/ HBP纳米结构中所含的HBP,原位生成金纳米颗粒,并在不存在其他还原剂的情况下将其包封在二氧化钛/ HBP基质中。所制备的金纳米颗粒官能化的二氧化钛/ HBP杂化物表现出优异的催化功能,可还原4-硝基苯酚。该策略展示了针对特定应用的功能化二氧化钛/ HBP杂化物的典型示例。

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