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尼龙-12 纳米棒的分子自组装被圆柱状限制在纳米多孔氧化铝中。

Molecular self-assembly of nylon-12 nanorods cylindrically confined to nanoporous alumina.

机构信息

Japan Science and Technology Agency, ERATO, Takahara Soft Interfaces Project, Fukuoka 819-0395, Japan.

Institute for Materials Chemistry and Engineering, Kyushu University, Fukuoka 819-0395, Japan.

出版信息

IUCrJ. 2014 Oct 21;1(Pt 6):439-45. doi: 10.1107/S2052252514020132. eCollection 2014 Nov 1.

Abstract

Molecular self-assembly of nylon-12 rods in self-organized nanoporous alumina cylinders with two different diameters (65 and 300 nm) is studied with transmission electron microscopy (TEM) and wide-angle X-ray diffraction (WAXD) in symmetrical reflection mode. In a rod with a 300 nm diameter, the tendency of the hydrogen-bonding direction of a γ-form crystal parallel to the long axis of the rod is not clear because of weak two-dimensional confinement. In a rod with a diameter of 65 nm, the tendency of the hydrogen-bonding direction of a γ-form crystal parallel to the long axis of the rod is more distinct because of strong two-dimensional confinement. For the first time, selected-area electron diffraction (SAED) is applied in a transmission electron microscope to a polymer nanorod in order to determine the hydrogen-bond sheet and lamellar orientations. Results of TEM-SAED and WAXD showed that the crystals within the rod possess the γ-form of nylon-12 and that the b axis (stem axis) of the γ-form crystals is perpendicular to the long axis of the rod. These results revealed that only lamellae with 〈h0l〉 directions are able to grow inside the nanopores and the growth of lamellae with 〈hkl〉 (k ≠ 0) directions is stopped owing to impingements against the cylinder walls. The dominant crystal growth direction of the 65 nm rod in stronger two-dimensional confinement is in between the [-201] and [001] directions due to the development of a hydrogen-bonded sheet restricted along the long axis of the rod.

摘要

采用透射电子显微镜(TEM)和对称反射广角 X 射线衍射(WAXD)研究了两种不同直径(65nm 和 300nm)自组织纳米多孔氧化铝圆柱中尼龙-12 棒的分子自组装。在直径为 300nm 的棒中,由于二维限制较弱,γ 型晶体氢键方向平行于棒的长轴的趋势不明显。在直径为 65nm 的棒中,由于二维限制较强,γ 型晶体氢键方向平行于棒的长轴的趋势更为明显。首次在透射电子显微镜中应用选区电子衍射(SAED)对聚合物纳米棒进行了研究,以确定氢键片和层片的取向。TEM-SAED 和 WAXD 的结果表明,棒内的晶体具有尼龙-12 的γ型结构,γ 型晶体的 b 轴(茎轴)垂直于棒的长轴。这些结果表明,只有具有〈h0l〉方向的层片才能在纳米孔内生长,而具有〈hkl〉(k≠0)方向的层片的生长由于与圆柱壁的碰撞而停止。在较强二维限制下,65nm 棒的主要晶体生长方向在[-201]和[001]方向之间,这是由于沿棒的长轴限制了氢键片的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5102/4224462/bf42de3efedf/m-01-00439-fig1.jpg

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