...
首页> 外文期刊>Green chemistry >Lignin nano- and microparticles as template for nanostructured materials: formation of hollow metal-phenolic capsules
【24h】

Lignin nano- and microparticles as template for nanostructured materials: formation of hollow metal-phenolic capsules

机译:木质素纳米和微粒作为纳米结构材料的模板:中空金属 - 酚醛胶囊的形成

获取原文
获取原文并翻译 | 示例
           

摘要

Hollow polymeric, submicrometer-scaled capsules show promise in applications ranging from water remediation to drug delivery, and the preferred method for their synthesis includes templating from sacrificial particles. Such particles are typically non-renewable and the process of selective dissolution used to produce the capsules often requires harsh and/or toxic solvents. Thus, there is a critical need to develop inexpensive, sustainable templates that can be dismantled under mild conditions. Lignins have recently been introduced as renewable precursors for the synthesis of solid particles and can favorably substitute solid particles based on petrochemical (such as latex) or mineral (such as silica) precursors. Conveniently, widely available by-product streams of biomass processing can be used for the supramolecular assembly required for lignin particle formation. Herein, we introduce two common lignin sources (kraft and alkali lignins) as renewable and easily degradable particulate templates for the preparation of hollow polymeric capsules. The polymeric nanocoating, or wall of the capsules, was synthesized from renewable tannins, which self-assemble around the lignin particle template in the presence of metal ions, thereby coordinating into metal-phenolic networks (MPNs). The lignin template particles were easily degraded with aqueous or organic solvents under ambient conditions. Thus, the nanocoating assembly and template disassembly processes can be considered to be fully green. Finally, the synthesized hollow capsules were successfully utilized for water clean-up through the degradation of an organic dye, exemplifying a cost-effective and facile route for using environmentally friendly nanomaterials for environmental remediation.
机译:中空聚合物,底层粒度胶囊在从水修复到药物递送的应用中,其合成的优选方法包括从牺牲颗粒的模板。这种颗粒通常是不可再生的,并且用于产生胶囊的选择性溶解的方法通常需要刺激和/或有毒溶剂。因此,存在批判需要在温和的条件下拆除可以拆除的廉价,可持续的模板。最近已被引入Lignins作为可再生前体的合成固体颗粒,并且可以有利地代替基于石化(如乳胶)或矿物质(例如二氧化硅)前体的固体颗粒。方便地,广泛可用的生物质处理物流可用于木质素颗粒形成所需的超分子组件。在此,我们将两种常见的木质素源(牛皮油和碱性Lignin碱)作为可再生且易降解的颗粒模板,用于制备中空聚合物胶囊。胶囊的聚合物纳米织物或壁从可再生单宁合成,其在金属离子存在下自组装在木质素颗粒模板上,从而与金属 - 酚醛网络(MPN)配为。在环境条件下,木质素模板颗粒容易用水性或有机溶剂降解。因此,可以认为纳米织物组件和模板拆卸过程是完全绿色的。最后,合成的中空胶囊通过有机染料的降解成功用于水清洗,举例说明了使用环境友好纳米材料进行环境修复的成本效益和容易的途径。

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