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由嵌段共聚物的正交层状组装形成的具有正方形对称性的纳米图案。

Nanopatterns with a Square Symmetry from an Orthogonal Lamellar Assembly of Block Copolymers.

作者信息

Cha Seung Keun, Yong Daeseong, Yang Geon Gug, Jin Hyeong Min, Kim Jang Hwan, Han Kyu Hyo, Kim Jaeup U, Jeong Seong-Jun, Kim Sang Ouk

机构信息

National Creative Research Initiative Center for Multi-Dimensional Directed Nanoscale Assembly, Department of Materials Science and Engineering , KAIST , Daejeon 34141 , Republic of Korea.

Department of Physics, School of Natural Science , UNIST , Ulsan 44919 , Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2019 Jun 5;11(22):20265-20271. doi: 10.1021/acsami.9b03632. Epub 2019 May 24.

Abstract

A nanosquare array is an indispensable element for the integrated circuit design of electronic devices. Block copolymer (BCP) lithography, a promising bottom-up approach for sub-10 nm patterning, has revealed a generic difficulty in the production of square symmetry because of the thermodynamically favored hexagonal packing of self-assembled sphere or cylinder arrays in thin-film geometry. Here, we demonstrate a simple route to square arrays via the orthogonal self-assembly of two lamellar layers on topographically patterned substrates. While bottom lamellar layers within a topographic trench are aligned parallel to the sidewalls, top layers above the trench are perpendicularly oriented to relieve the interfacial energy between grain boundaries. The size and period of the square symmetry are readily controllable with the molecular weight of BCPs. Moreover, such an orthogonal self-assembly can be applied to the formation of complex nanopatterns for advanced applications, including metal nanodot square arrays.

摘要

纳米正方形阵列是电子器件集成电路设计中不可或缺的元素。嵌段共聚物(BCP)光刻技术是一种很有前景的用于10纳米以下图案化的自下而上的方法,但由于在薄膜几何结构中自组装球体或圆柱体阵列在热力学上倾向于六方堆积,因此在生产方形对称性方面存在一个普遍的困难。在此,我们展示了一种通过在具有形貌图案的衬底上进行两个层状层的正交自组装来制备正方形阵列的简单方法。虽然形貌沟槽内的底部层状层与侧壁平行排列,但沟槽上方的顶层则垂直取向以释放晶界之间的界面能。正方形对称性的尺寸和周期可以通过BCP的分子量轻松控制。此外,这种正交自组装可应用于形成用于先进应用的复杂纳米图案,包括金属纳米点正方形阵列。

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