Instituto de Investigaciones en Tecnologías Energéticas y Materiales Avanzados (IITEMA), Universidad Nacional de Río Cuarto (UNRC) and Consejo Nacional de Investigaciones Científicas y Tecnológicas (CONICET), Campus Universitario, 5800, Río Cuarto, Argentina.
Macromol Rapid Commun. 2020 Apr;41(8):e1900601. doi: 10.1002/marc.201900601. Epub 2020 Feb 13.
The use of conjugated polymer nanoparticles (CP NPs) of poly(9,9-dioctylfluorene-alt-benzothiadiazole) and poly(9,9-di-n-octylfluorenyl-2,7-diyl) as efficient photoinitiator systems (PIS) of vinyl polymerization in water is reported herein. CP NPs are biocompatible, excitable with blue commercial LEDs and, unlike visible light Type II PIS, do not need co-initiators to trigger a monomer chain reaction. CP NPs photoinitiate polymerization of a variety of acrylic monomers with initiation rates comparable to those observed for well-known Type II PIS. Given the extraordinarily large molar absorption coefficients of CP NPs (≈10 m cm ) very low particle concentration is required for effective polymerization. Additionally, CP NPs behave as conventional macrophotoinitiators significantly reducing contamination risks due to leaching of low molecular weight byproducts. These combined features make CP NPs PIS suitable to synthesize polymeric materials for many healthcare and biomedical applications including drug delivery, tissue engineering, prosthetic implants, and food/medicine packaging. These CP NPs PIS are also used to synthesize nano-hydrogels with a relatively narrow and controlled size distribution in the absence of surfactants. It is proposed that polymerization is initiated at the CP NPs surface by photogenerated free polarons, in close analogy to the mechanism previously described for PIS based on inorganic semiconductor NPs.
本文报道了聚(9,9-二辛基芴-alt-苯并噻二唑)和聚(9,9-二正辛基芴-2,7-二基)共轭聚合物纳米粒子(CP NPs)在水中作为乙烯基聚合的有效光引发剂体系(PIS)的应用。CP NPs 具有生物相容性,可被蓝色商用 LED 激发,与可见光 II 型 PIS 不同,它们不需要共引发剂来引发单体链反应。CP NPs 引发各种丙烯酸单体聚合,引发速率与知名的 II 型 PIS 相当。鉴于 CP NPs 异常大的摩尔吸收系数(≈10 m cm),仅需非常低的粒子浓度即可实现有效的聚合。此外,CP NPs 表现为常规的宏观光引发剂,大大降低了由于小分子副产物浸出而造成的污染风险。这些综合特性使得 CP NPs PIS 适用于合成许多医疗保健和生物医学应用的聚合材料,包括药物输送、组织工程、假体植入物和食品/药品包装。这些 CP NPs PIS 还用于在没有表面活性剂的情况下合成具有相对较窄和受控尺寸分布的纳米水凝胶。据推测,聚合是由光生自由极化子在 CP NPs 表面引发的,这与以前基于无机半导体 NPs 的 PIS 所描述的机制非常相似。