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羟基官能化聚苯胺纳米球:通过维生素C传感追踪纳米表面的分子相互作用。

Hydroxyl-functionalized polyaniline nanospheres: tracing molecular interactions at the nanosurface via vitamin C sensing.

作者信息

Anilkumar P, Jayakannan M

机构信息

Chemical Sciences & Technology Division, National Institute for Interdisciplinary Science and Technology (NIIST), Thiruvananthapuram 695019, Kerala, India.

出版信息

Langmuir. 2008 Sep 2;24(17):9754-62. doi: 10.1021/la801128j. Epub 2008 Aug 5.

Abstract

Here, we report a synthesis of novel polyaniline nanospheres bearing mono- and bishydroxyl functional groups to trace the molecular interactions at the nanosurfaces through vitamin C sensing. Two new aniline monomers were synthesized via a tailor-made approach and polymerized to produce soluble and uniform polyaniline nanospheres. The structures of the monomers and polymers were characterized by NMR, FT-IR, and MS techniques, and the morphology of the nanomaterials was analyzed by SEM and TEM. The mechanistic aspects of the nanomaterial formations were analyzed by FT-IR and dynamic light scattering techniques. These studies revealed that the hydroxyl-functionalized monomers have strong hydrogen bonding at the monomer level and form spherical aggregates in water, which are templates for the polyaniline nanospheres 600 +/- 100 nm in size. A controlled synthesis was also carried out using aniline hydrochloride as an unsubstituted counterpart, which yields polyaniline nanofibers. WXRD analysis confirmed the presence of a sharp peak at lower angle at 2theta = 7.3 degrees ( d-spacing of 13.4 A) in hydroxyl-substituted nanospheres with respect to enhancement of solid-state ordered crystalline domains, whereas unsubstituted nanofibers were found to be highly amorphous. Vitamin C was employed as an analyte to trace the molecular interaction at the nanosphere surface and study the influence of nanosurface functionalization on the sensing ability of biomolecules. The bishydroxyl-functionalized polyaniline nanospheres were found to show efficient molecular interactions toward vitamin C, whereas nanospheres with a monohydroxyl group or unsubstituted nanofibers failed as sensing materials. In a nut shell, in the present investigation, for the first time, we have proved the importance of surface functionalization of polyaniline nanomaterial, exclusively nanospheres, using hydroxyl groups for studying the molecular interactions at the nanosurfaces with biomolecules such as vitamin C.

摘要

在此,我们报告了一种新型的带有单羟基和双羟基官能团的聚苯胺纳米球的合成方法,通过维生素C传感来追踪纳米表面的分子相互作用。通过定制方法合成了两种新的苯胺单体,并将其聚合以制备可溶且均匀的聚苯胺纳米球。通过核磁共振(NMR)、傅里叶变换红外光谱(FT-IR)和质谱(MS)技术对单体和聚合物的结构进行了表征,通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)分析了纳米材料的形态。通过FT-IR和动态光散射技术分析了纳米材料形成的机理。这些研究表明,羟基官能化单体在单体水平上具有很强的氢键,并在水中形成球形聚集体,这些聚集体是尺寸为600±100nm的聚苯胺纳米球的模板。还使用盐酸苯胺作为未取代的对应物进行了可控合成,得到了聚苯胺纳米纤维。广角X射线衍射(WXRD)分析证实,相对于固态有序结晶域的增强,在羟基取代的纳米球中,2θ = 7.3°(d间距为13.4 Å)处有一个较低角度的尖锐峰,而未取代的纳米纤维则高度无定形。使用维生素C作为分析物来追踪纳米球表面的分子相互作用,并研究纳米表面功能化对生物分子传感能力的影响。发现双羟基官能化的聚苯胺纳米球对维生素C表现出有效的分子相互作用,而单羟基纳米球或未取代的纳米纤维作为传感材料则失败。简而言之,在本研究中,我们首次证明了聚苯胺纳米材料(特别是纳米球)表面功能化使用羟基对于研究纳米表面与维生素C等生物分子之间的分子相互作用的重要性。

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