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纤维素水热炭化:纳米碳点的生成和荧光性能调控机理

纤维素水热炭化:纳米碳点的生成和荧光性能调控机理
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  • 批准号:31570567
  • 批准年度: 2015年
  • 学科分类:树木组分化学与利用基础(C160403) |
  • 项目负责人:刘守新
  • 负责人职称:教授
  • 依托单位:东北林业大学
  • 资助金额:64万元
  • 项目类别:面上项目
  • 研究期限:2016年01月01日 至 2019年12月31日
  • 中文关键词: 纤维素;炭化;纳米;碳点;荧光
  • 英文关键词:Carbon Quantum Dots ;Formation Mechanism;Cellulose;Hydrothermal Carbonization ;Fluorescent

项目摘要

中文摘要

碳量子点是近几年来发现的一种以碳为骨架,由SP2 及不饱和SP3 杂化碳原子组成的新型荧光纳米粒子,是继富勒烯、碳纳米管及石墨烯之后最热门的碳纳米材料之一。本项目拟以自然界中储量最大的天然高分子纤维素为原料,采用环境友好的水热炭化法制备水溶性荧光纳米碳点,对反应条件改变引起的碳点微观形貌和光学性能改变进行系统研究。解析不同反应温度、时间、压强下碳点形貌、粒径分布、表面官能团结构与光学性能的改变规律,阐明表面功能基团对碳点荧光性能的影响机制,探讨纤维素水热条件下水解步骤,研究水热中间产物聚集成核机理及生长历程,阐明纤维素水热炭化纳米碳点的形成机理,建立并验证碳点的光学性能调控规律,确定纤维素水热炭化纳米碳点的结构调控制备体系,为进一步实现生物质资源制备高性能纳米碳点提供理论基础。

英文摘要

Fluorescent carbon quantum dots (CQDs) are a new class of carbon nanomaterials that have emerged recently and have garnered much interest as potential competitors to conventional semiconductor quantum dots. CQDs was composed by SP2 and unsaturated SP3 hybridization carbon atoms. Since their discovery, CQDs have become the most popular nanomaterials among the nanocarbon family,including fullerene,the carbon nanotube and graphene.In the present work, we will develop a simple, low cost, and green preparative strategy toward water-soluble CQDs by hydrothermal treatment of cellulose for the first time. The as-prepared CQDs will be characterized by UV–Vis, PL, XPS, FTIR and TEM, etc. Effect of experimental parameters which include reaction time, temperature and pressure on the morphology, particle size and distribution, crystalline structure, surface functional groups and fluorescent properties will be investigated systematically. Working mechanism of surface functional groups on the fluorescent properties of CQDs will be established. Intermediate products generated from cellulose hydrothermal carbonization will be measured in detail. Mechanism of formation and fluorescent properties adjustment of CQDs synthesized via cellulose hydrothermal carbonization will be established. The potential application of the obtained CQDS for high active composite photocatalyst, high sensitive and high selective detective probe will be investigated. The results will provide guided and support of both science and technology for the preparation of high performance CQDs from renewable biomass.

评估说明

    国家自然科学基金项目“纤维素水热炭化:纳米碳点的生成和荧光性能调控机理”发布于爱科学iikx,并永久归类于相关科学基金导航中,仅供广大科研工作者查询、学习、选题参考。国科金是根据国家发展科学技术的方针、政策和规划,以及科学技术发展方向,面向全国资助基础研究和应用研究,发挥着促进我国基础研究源头创新的作用。国科金的真正价值在于它能否为科学进步和社会发展带来积极的影响。

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