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用于合成低多分散性酮官能化纳米物体的水相聚合诱导自组装

Aqueous Polymerization-Induced Self-Assembly for the Synthesis of Ketone-Functionalized Nano-Objects with Low Polydispersity.

作者信息

Zhou Wei, Qu Qingwu, Xu Yuanyuan, An Zesheng

机构信息

Institute of Nanochemistry and Nanobiology, College of Environmental Science and Chemical Engineering, Shanghai University, Shanghai 200444, China.

出版信息

ACS Macro Lett. 2015 May 19;4(5):495-499. doi: 10.1021/acsmacrolett.5b00225. Epub 2015 Apr 17.

Abstract

Efficient synthesis of functionalized, uniform polymer nano-objects in water with controlled morphologies in one step and at high concentrations is extremely attractive, from perspectives of both materials applications and industrial scale-up. Herein, we report a novel formulation for aqueous reversible addition-fragmentation chain transfer (RAFT) dispersion polymerization based on polymerization-induced self-assembly (PISA) to synthesize ketone-functionalized nanospheres and vesicles. Significantly, the core-forming block was composed entirely of a ketone-containing polymer from a commodity monomer diacetone acrylamide (DAAM), resulting in a high density of ketone functionality in the nano-objects. Producing uniform vesicles represents another challenge both in PISA and in the traditional self-assembly process. Aiming at producing uniform nano-objects, especially vesicles, in such a highly efficient aqueous PISA process, we devised strategies to allow sufficient time for the in situ generated polymers to relax and reorganize into vesicles with a remarkably low polydispersity. Specifically, both reducing the radical initiator concentration and lowering the polymerization temperature were shown to be effective for improving the uniformity of vesicles. Such an efficient, aqueous PISA to produce functionalized and uniform nano-objects with controlled morphologies at solid contents up to 20% represents important progress in the field.

摘要

从材料应用和工业放大生产的角度来看,一步法在水中高效合成具有可控形态且功能化的均匀聚合物纳米粒子,并达到高浓度,极具吸引力。在此,我们报道了一种基于聚合诱导自组装(PISA)的新型水相可逆加成-断裂链转移(RAFT)分散聚合配方,用于合成酮官能化的纳米球和囊泡。值得注意的是,成核嵌段完全由商品单体双丙酮丙烯酰胺(DAAM)制成的含酮聚合物组成,从而在纳米粒子中形成了高密度的酮官能团。制备均匀的囊泡在PISA以及传统自组装过程中都是另一项挑战。为了在这种高效的水相PISA过程中制备均匀的纳米粒子,特别是囊泡,我们设计了一些策略,以使原位生成的聚合物有足够的时间弛豫并重新组织成具有极低多分散性的囊泡。具体而言,降低自由基引发剂浓度和降低聚合温度都被证明对提高囊泡的均匀性有效。这种在高达20%的固含量下高效的水相PISA过程,用于制备具有可控形态的功能化且均匀的纳米粒子,代表了该领域的重要进展。

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