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通过热退火从离散的低聚脲烷可控制备不同的纳米结构。

Controlled Fabrication of Distinct Nanostructures from Discrete Oligourethanes via Thermal Annealing.

作者信息

Shi Qiangqiang, Yu Yong, Guo Lingxiao, Zhang Jialin, Tan Jiajia, Zhang Jin, Hu Jinming, Liu Shiyong

机构信息

Department of Pharmacy, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, and Key Laboratory of Precision and Intelligent Chemistry, University of Science and Technology of China, Hefei, Anhui Province 230026, China.

出版信息

ACS Macro Lett. 2024 Nov 19;13(11):1456-1462. doi: 10.1021/acsmacrolett.4c00615. Epub 2024 Oct 15.

DOI:10.1021/acsmacrolett.4c00615
PMID:39404655
Abstract

The self-assembly of sequence-defined polymers (SDPs) enables the formation of a diverse array of nanostructures; however, the construction of complex hierarchical structures via thermal annealing from SDPs remains relatively unexplored. In this study, two series of oligourethanes, 2Cit-B-OH and 2Cit-B-OH, were synthesized to investigate their thermal annealing behaviors. Nanorod clusters were generated from 2Cit-B-OH in a mixture of 1,4-dioxane and toluene, whereas 2Cit-B-OH formed nanosheets after thermal annealing. Upon modifying the structure of the repeating units, 2Cit-B-OH self-assembled into ultrathin nanosheets, transitioning from nanospheres after thermal annealing in a mixture of isopropanol and cyclohexane, while "flower" micelles were produced from 2Cit-B-OH. Interestingly, when isopropanol was replaced with a mixture of isopropanol and tetrahydrofuran (THF), uniform nanotubes were generated by 2Cit-B-OH under the same thermal annealing conditions. Additionally, a discrete amphiphile (2Cit-B-()DPEG) was synthesized, leading to the formation of uniform nanosheets in aqueous solution after thermal annealing. This work highlights the significant effects of sequence and repeating unit structure of SDPs on their self-assembly behaviors and presents a novel strategy for the controlled fabrication of unique nanostructures from SDPs.

摘要

序列定义聚合物(SDPs)的自组装能够形成各种各样的纳米结构;然而,通过SDPs进行热退火构建复杂的层次结构仍相对未被探索。在本研究中,合成了两个系列的寡聚脲烷,2Cit-B-OH和2Cit-B-OH,以研究它们的热退火行为。在1,4-二氧六环和甲苯的混合物中,2Cit-B-OH生成了纳米棒簇,而2Cit-B-OH在热退火后形成了纳米片。通过改变重复单元的结构,2Cit-B-OH自组装成超薄纳米片,在异丙醇和环己烷的混合物中热退火后从纳米球转变而来,而2Cit-B-OH则生成了“花状”胶束。有趣的是,当用异丙醇和四氢呋喃(THF)的混合物取代异丙醇时,在相同的热退火条件下,2Cit-B-OH生成了均匀的纳米管。此外,合成了一种离散两亲物(2Cit-B-()DPEG),热退火后在水溶液中形成了均匀的纳米片。这项工作突出了SDPs的序列和重复单元结构对其自组装行为的显著影响,并提出了一种从SDPs可控制造独特纳米结构的新策略。

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Controlled Fabrication of Distinct Nanostructures from Discrete Oligourethanes via Thermal Annealing.通过热退火从离散的低聚脲烷可控制备不同的纳米结构。
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