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基于卟啉微球pH响应形状演变的新型卟啉纳米材料的制备

Preparation of novel porphyrin nanomaterials based on the pH-responsive shape evolution of porphyrin microspheres.

作者信息

Zhang Wenbo, Xing Lingbo, Wang Haisheng, Liu Xiujun, Feng Yaqing, Gao Changyou

机构信息

†MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, China.

‡School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.

出版信息

Langmuir. 2015 Apr 14;31(14):4330-40. doi: 10.1021/acs.langmuir.5b00322. Epub 2015 Apr 2.

Abstract

The shapes and properties of self-assembled materials can be adjusted easily using environmental stimuli. Yet, the stimulus-triggered shape evolution of organic microspheres in aqueous solution has rarely been reported so far. Here, a novel type of poly(allylamine hydrochloride)-g-porphyrin microspheres (PAH-g-Por MPs) was prepared by a Schiff base reaction between 2-formyl-5,10,15,20-tetraphenylporphyrin (Por-CHO) and PAH doped in 3.5-μm CaCO3 microparticles, followed by template removal. The PAH-g-Por MPs had an average diameter of 2.5 μm and could be transformed into one-dimensional nanorods (NRs) and wormlike nanostructures (WSs) after being incubated for different times in pH 1-4 HCl solutions. The rate and degree of hydrolysis had a significant effect on the formation and morphologies of the nanorods. The NRs@pH1, NRs@pH2, and NRs@pH3 were all composed of the released Por-CHO and the unhydrolyzed PAH-g-Por because of the incomplete hydrolysis of the Schiff base. However, the WSs@pH4 were formed by a pure physical shape transformation, because they had the same composition as the PAH-g-Por MPs and the Schiff base bonds were not hydrolyzed. The self-assembled NRs and WSs exhibited good colloidal stability and could emit stable red fluorescence over a relatively long period of time.

摘要

利用环境刺激可以轻松调节自组装材料的形状和性质。然而,迄今为止,水溶液中有机微球受刺激触发的形状演变鲜有报道。在此,通过2-甲酰基-5,10,15,20-四苯基卟啉(Por-CHO)与掺杂在3.5-μm碳酸钙微粒中的聚烯丙胺盐酸盐(PAH)之间的席夫碱反应制备了一种新型的聚(烯丙胺盐酸盐)-g-卟啉微球(PAH-g-Por MPs),随后去除模板。PAH-g-Por MPs的平均直径为2.5μm,在pH 1-4的盐酸溶液中孵育不同时间后可转变为一维纳米棒(NRs)和蠕虫状纳米结构(WSs)。水解速率和程度对纳米棒的形成和形态有显著影响。由于席夫碱水解不完全,NRs@pH1、NRs@pH2和NRs@pH3均由释放的Por-CHO和未水解的PAH-g-Por组成。然而,WSs@pH4是通过纯物理形状转变形成的,因为它们与PAH-g-Por MPs具有相同的组成且席夫碱键未水解。自组装的NRs和WSs表现出良好的胶体稳定性,并且能够在较长时间内发射稳定的红色荧光。

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