1. 滨州医学院药学院
2. 鲁东大学食品工程学院
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林栋, 赵芹, 韩景田, 等. 以三(2-氨基乙基)胺为核的PAMAM与Zn2+的络合作用研究[J]. 分析测试学报, 2012,31(12):1572-1576.
Research on Complexation between PAMAM Dendrimer with a Tri(2-aminoethyl)amine Core and Zn2+[J]. 2012,31(12):1572-1576.
以三(2-氨基乙基)胺为核,通过发散法合成了不同代数的树状聚酰胺胺(PAMAM),并利用FTIR、1H NMR等技术对合成的产物进行表征,结果表明所合成产物的分子结构与理论结构相符。合成的PAMAM具有大量的伯胺、叔胺和酰胺,可以作为Zn2+的络合剂。采用荧光分光光度法研究了PAMAM与Zn2+的络合作用,探讨了PAMAM的代数、Zn2+与PAMAM的摩尔比、溶液pH值、反应时间和温度对络合的影响。结果表明PAMAM的代数越高,所络合的Zn2+数目越多,且与理论值相符;随着Zn2+与PAMAM摩尔比的增加,络合形式发生变化;溶液pH值对络合体系有显著影响,强酸性条件下,PAMAM的伯胺和叔胺被质子化,H+取代Zn2+,Zn2+从络合体系中释放出来,这为PAMAM的循环利用提供了理论依据;另外,反应时间和温度对PAMAM与Zn2+的络合也有一定影响,延长反应时间和升高反应温度均使络合程度增加。
Different generatons of polyamidoamine dendrimers(PAMAM) with tri(2-aminoethyl)amine at the core were synthesized using divergent synthesis.The products were characterized by FTIR and 1H NMR.The results showed that the products synthesized had a precise molecular structure and the molecular structure was also correspond to the theoretical structure of the PAMAM dendrimers.The PAMAM possess a large number of primary amine groups,tertiary amine groups and amide groups,which can complex with Zn2+.In this paper,the complexation between PAMAM dendrimers and Zn2+ were studied by fluorescence spectrophotometry,and effects of the generation of PAMAM,molar ratio of Zn2+ to PAMAM,pH value of the solution,reaction temperature and reaction time on the complexation were discussed.The results showed that the number of complexed Zn2+ increased with the increase of generation of PAMAM and the experimental results were almost simlar to the theory value.As the molar ratio of Zn2+ to PAMAM increased,the complex forms cuold chang.The pH value of the solution also had a great effect on the complexation of PAMAM-Zn2+.The primary amine groups and tertiary amine groups of PAMAM were protonated under strong acidic conditions and Zn2+ was replaced by H+,resulting in the release of Zn2+.This phenomenon indicated that PAMAM dendrimers could be recycled.It was also found that the reaction temperature and reaction time could influence the complexation of Zn2+-PAMAM dendrimers.The reaction extent of complex system was enhanced with the increase of reaction temperature and reaction time.
三(2-氨基乙基)胺PAMAM树状大分子Zn2+络合荧光分光光度法
tri(2-aminoethyl)aminePAMAM-dendrimerZn2+complexationfluorescence spectrophotometry
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