首页> 美国卫生研究院文献>ACS Omega >Unexpected Hammerlike Liquid to PulverizeSilica Powders to Stable Sols and Its Application in the Preparationof Sub-10 nm SiO2 Hybrid Nanoparticles with Chirality
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Unexpected Hammerlike Liquid to PulverizeSilica Powders to Stable Sols and Its Application in the Preparationof Sub-10 nm SiO2 Hybrid Nanoparticles with Chirality

机译:意外的锤状液体会粉碎二氧化硅粉稳定溶胶及其在制备中的应用手性的亚10纳米SiO2杂化纳米粒子的制备

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摘要

Silane coupling agents are well-known as surface modifiers for various kinds of silica (SiO2). However, in the present research, it has been found that they can also work as “hammerlike liquid” to pulverize different kinds of bulk amorphous SiO2 in aqueous systems. This new function was typically clarified by using 3-aminopropyltrimethoxysilane (APS) and bundles of chiral SiO2 nanofibers (with average diameter of ∼10 nm) as raw materials. By a simple reflux of the mixture of SiO2 nanofibers and excessive APS in pure H2O, the solid-containing mixture turned into a completely clear solution that contained sub-10 nm, amine-modified, and water-soluble hybrid SiO2 sols (HS-sols). Moreover, this solution showed blue luminescence under ultraviolet irradiation. Furthermore, the circular dichroism and vibrational circular dichroism spectra revealed that the HS-sols are optically active even though the pristine chiral SiO2 nanofibers were completely destroyed. It was considered that the chirality of SiO2 nanofibers was due to the asymmetric arrangement of Si and O atoms in chiral domains (<10 nm) on the Si–O–Sinetwork of SiO2, and these domains are still preservedin chiral HS-sols. This green method has high potential for the recyclingof rich SiO2 sources to obtain functional SiO2 nanomaterials with applications such as optical display, imaging,and chiral recognition. Also, it offers a tool for the analysis ofthe structural properties of SiO2 on the molecular scale.
机译:硅烷偶联剂是众所周知的各种二氧化硅(SiO2)的表面改性剂。然而,在本研究中,已经发现它们也可以作为“锤状液体”来粉碎水性体系中不同种类的块状无定形SiO2。通常通过使用3-氨丙基三甲氧基硅烷(APS)和手性SiO2纳米纤维束(平均直径约为10 nm)作为原料来阐明这一新功能。通过简单地回流SiO2纳米纤维和过量的APS在纯水中的混合物,含固体的混合物变成完全透明的溶液,其中包含10纳米以下,胺改性和水溶性杂化SiO2溶胶(HS溶胶)。此外,该溶液在紫外线照射下显示出蓝色发光。此外,圆二色性和振动圆二色性光谱表明,即使原始手性SiO 2纳米纤维被完全破坏,HS-溶胶仍具有光学活性。认为SiO2纳米纤维的手性是由于Si–O–Si上手性域(<10 nm)中Si和O原子的不对称排列SiO2网络,这些畴仍然保留在手性HS-溶胶中。这种绿色方法具有很高的回收潜力丰富的SiO2来源以获得功能性SiO2纳米材料,其应用领域包括光学显示器,成像,和手性识别。此外,它还提供了用于分析SiO2在分子尺度上的结构特性。

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