...
首页> 外文期刊>RSC Advances >Polymeric nanocapsules templated on liquid cores as efficient photoreactors
【24h】

Polymeric nanocapsules templated on liquid cores as efficient photoreactors

机译:聚合物纳米胶囊在液体芯上模板化,如有效的光反应器

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Polymeric nanocapsules templated on liquid cores were obtained without stabilization by low molecular weight surfactants and applied as photochemical reactors. Toluene cores of the capsules were stabilized by novel graft amphiphilic polyelectrolyte poly(allylamine hydrochloride)- graft -poly(vinylnaphthalene) (PAH- graft -PVN) that was synthesized via nitroxide-mediated radical polymerization. Self-aggregation of the photoactive copolymer consisting of a solvophilic backbone and solvophobic side chains in water as a selective solvent leads to formation of intermolecular aggregates in which hydrophobic perylene fluorophore can be solubilized. However, at the water/toluene interface the macromolecules partially uncoil and polymeric chains are able to stabilize emulsion droplets by anchoring the hydrophobic arms in them. Formation of such capsules was followed using dynamic light scattering and electron microscopies. The obtained capsules showed long term stability. Importantly, energy transfer between the polymeric naphthalene moieties and incorporated perylene chromophores was realized much more efficiently in the core–shell capsules than in the copolymer aggregates. This can be explained in terms of the less packed but still confined environment of the nanocapsules. Such an assembly favors migration and transfer of excitation energy, which is otherwise dissipated in naphthalene excimers and aggregates that dominate in the copolymer aggregates formed in an aqueous environment. The obtained nanocapsules were shown to serve as both stable nanocontainers and efficient nanoreactors for photooxidation of perylene as an exemplary reaction. The reaction photosensitized by the polymeric naphthalene chromophores proceeded at least 3 times faster in the capsules than in the aggregates, disregarding the pH of the medium. Such properties make these novel capsules promising for numerous applications concerning photosensitized reactions that may be carried out in an aqueous medium and benefit from the confinement effect.
机译:获得在液体核上模板化的聚合物纳米胶囊无需低分子量表面活性剂稳定并施加为光化学反应器。通过新的接枝两亲聚电解质聚(盐酸氨基丙基丙基丙基丙基丙基丙基丙基丙基丙基丙基丙基) - 聚(乙烯基萘)(PAH-crapht-PVN)稳定,通过硝基氧化物介导的自由基聚合来稳定。作为选择性溶剂在水中的溶光性骨架和溶性侧链组成的光活性共聚物的自聚集导致形成分子间聚集体,其中可以溶解疏水性泛荧光团。然而,在水/甲苯界面下,通过将疏水臂锚固在它们中,甲苯界面部分地卷起和聚合物链能够稳定乳液液滴。使用动态光散射和电子显微镜遵循形成这种胶囊。所获得的胶囊显示出长期稳定性。重要的是,聚合物萘部分和掺入的前丙烯发色团之间的能量转移比在核 - 壳胶囊中比在共聚物聚集体中更有效地实现。这可以根据纳米胶囊的较少填充但仍然受限的环境来解释。这种组装有利于迁移和转移激发能量,其在萘醌促进剂中散发,并且占据在含水环境中形成的共聚物聚集体中的聚集体。所获得的纳米胶囊被证明用作稳定的纳米容器和有效的纳米反应器,用于Perylene的光氧化作为示例性反应。通过聚合物萘发色团感光的反应在胶囊中的速度比聚集体更快3倍,忽略介质的pH。这些性质使这些新型胶囊具有关于有关光敏反应的许多应用,这些应用可以在水性介质中进行并受益于限制效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号