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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Formation of Hybrid Hydrogels Consisting of Tripeptide and Different Silver Nanoparticle-Capped Ligands: Modulation of the Mechanical Strength of Gel Phase Materials
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Formation of Hybrid Hydrogels Consisting of Tripeptide and Different Silver Nanoparticle-Capped Ligands: Modulation of the Mechanical Strength of Gel Phase Materials

机译:由三肽和不同的银纳米颗粒封端的配体组成的杂化水凝胶的形成:凝胶相材料的机械强度的调制。

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摘要

An N-terminally Boc (tert-butyloxycarbonyl) group-protected synthetic tripeptide (Boc-Phe-Phe-Ala-OH) has been found to form a translucent hydrogel in basic aqueous medium. This hydrogel material has been characterized using field emission scanning electron microscopy (FE-SEM), transmission electron microscopy (TEM), Fourier transformed infrared spectroscopy, differential scanning calorimetric, X-ray diffraction (XRD), and rheological studies. FE-SEM and TEM studies have revealed the formation of a nanofibrillar network structure upon gelation. Thiol (-SH) containing ligands (amino acid/peptide) have been used to stabilize small silver nanoparticles (AgNPs), and these thiol-capped silver nanoparticles have been incorporated into this hydrogel to prepare hybrid hydrogels. Morphological study of silver nanoparticles containing a hybrid hydrogel (using TEM experiments) has indicated the nice fabrication of AgNPs along the gel nanofibers. Fabrication of nanoparticles upon the gel nanofibers is due to noncovalent interactions between the capping ligands of the nanoparticles and the peptide-based hydrogel nanofibers. Rheological investigations of these hybrid hydrogels have shown the weakening of the mechanical strength of the hydrogel after incorporation of AgNPs within the native hydrogel system. Our studies have vividly shown the dependence of the elastic modulus (C') and yield stress (σ_y) on three factors: (a) the nature of the stabilizing ligands used for AgNPs, (b) the size of the AgNPs, and (c) the amount of AgNPs used for the preparation of hybrid hydrogel systems. Modulation of the mechanical strength of the hybrid hydrogel can be successfully achieved by varying these above-mentioned factors. This modulation of the mechanical properties keeps a future promise to make tunable soft materials with interesting properties.
机译:已经发现,在碱性水性介质中,具有N端Boc(叔丁氧羰基)基团保护的合成三肽(Boc-Phe-Phe-Ala-OH)形成半透明的水凝胶。使用场发射扫描电子显微镜(FE-SEM),透射电子显微镜(TEM),傅立叶变换红外光谱,差示扫描量热法,X射线衍射(XRD)和流变学研究对这种水凝胶材料进行了表征。 FE-SEM和TEM研究表明,凝胶化后形成了纳米原纤维网络结构。含硫醇(-SH)的配体(氨基酸/肽)已用于稳定小银纳米颗粒(AgNPs),并且将这些巯基封端的银纳米颗粒掺入该水凝胶中以制备杂化水凝胶。包含杂化水凝胶的银纳米颗粒的形态学研究(使用TEM实验)表明,沿凝胶纳米纤维良好地制备了AgNP。凝胶纳米纤维上纳米颗粒的制造是由于纳米颗粒的封端配体与基于肽的水凝胶纳米纤维之间的非共价相互作用。这些杂化水凝胶的流变学研究表明,在天然水凝胶系统中掺入AgNPs后,水凝胶的机械强度减弱。我们的研究生动地表明了弹性模量(C')和屈服应力(σ_y)取决于三个因素:(a)用于AgNPs的稳定配体的性质,(b)AgNPs的大小,以及(c )用于制备混合水凝胶系统的AgNP的量。通过改变这些上述因素,可以成功地实现对混合水凝胶的机械强度的调节。机械性能的这种调节保留了将来制造具有令人感兴趣的性能的可调软材料的希望。

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