详细信息
点击反应制备木质素-纳米SiO_2复合微粒及其结构表征 被引量:1
Preparation and Characterization of Lignin-silica Nanoparticles via Click Reaction
文献类型:期刊文献
中文题名:点击反应制备木质素-纳米SiO_2复合微粒及其结构表征
英文题名:Preparation and Characterization of Lignin-silica Nanoparticles via Click Reaction
作者:熊凯[1,2,3,4] 金灿[1,2,3,4] 吴国民[1,2,3,4] 刘贵锋[1,2,3,4] 孔振武[1,2,3,4]
第一作者:熊凯
机构:[1]中国林业科学研究院林产化学工业研究所;[2]生物质化学利用国家工程实验室;[3]国家林业局林产化学工程重点开放性实验室;[4]江苏省生物质能源与材料重点实验室
年份:2016
卷号:36
期号:2
起止页码:115-120
中文期刊名:林产化学与工业
外文期刊名:Chemistry and Industry of Forest Products
收录:CSTPCD;;Scopus;北大核心:【北大核心2014】;CSCD:【CSCD2015_2016】;
基金:国家自然科学基金资助项目(31400516);中国林科院中央级公益性科研院所基本科研业务费专项资金(CAFYBB2014QB043)
语种:中文
中文关键词:木质素;纳米SiO2;复合微粒;点击反应
外文关键词:lignin; silica nanoparticles; composite particles; click reaction;
分类号:TQ35
摘要:以竹木质素为原料,利用Cu(Ⅰ)催化的炔基-叠氮环加成点击反应将木质素修饰到纳米SiO2材料表面,制备木质素-纳米SiO2复合微粒(LS-NPs)。首先采用硅烷基化反应在纳米SiO2微粒表面引入叠氮结构,并由竹木质素制备炔基木质素,再通过Cu(Ⅰ)催化炔基木质素与叠氮基纳米SiO2的点击反应生成含三氮唑结构单元的LS-NPs。采用红外光谱(FT-IR)、元素分析(EA)、X射线光电子能谱(XPS)等分析手段表征了LS-NPs的化学结构,并通过扫描电镜(SEM)、透射电镜(TEM)、Zeta电位分析仪和热重分析(TGA)等表征方法考察了LS-NPs的形貌结构和理化性质。结果表明,点击反应成功将木质素结构通过三氮唑单元接枝到纳米SiO2表面,LS-NPs微粒为球形,粒径为50~100 nm,分散性能和热稳定性能均有明显提高。
Lignin-silica nanoparticles( LS-NPs) were prepared by grafting biodegradable lignin onto silica nanoparticles surface via the copper( I) catalyzed azide-alkyne cycloaddition reaction using bamboo lignin as raw material. Azido group was firstly grafted onto the surface of silica nanoparticles by silanization reaction,then the azido silica nanoparticles were modified with propargylated lignin obtained from bamboo lignin to yield LS-NPs through triazole unitsvia click reaction catalyzed by copper( I).The chemical structures of LS-NPs were characterized by FT-IR, elemental analysis and XPS. The morphology and physicochemical properties of LS-NPs were investigated by scanning electron microscopy( SEM), transmission electron microscopy( TEM),Zeta potential and thermal gravimetric analysis( TGA). Experimental results indicated that the diameter of LS-NPs was ranged from 50 to 100 nm. Particularly,the dispersibility and thermo stability of LS-NPs improved significantly.
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