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材料导报  2024, Vol. 38 Issue (17): 22070038-6    https://doi.org/10.11896/cldb.22070038
  高分子与聚合物基复合材料 |
一种新型的用于萃取铷的冠醚功能化磁性固相纳米材料
付华, 陈慧媛, 宋维君, 赵云*
青海大学化工学院,西宁 810016
A Novel Crown-ether-functionalized Magnetic Solid-phase Nanomaterial for Extracting Rubidium
FU Hua, CHEN Huiyuan, SONG Weijun, ZHAO Yun*
College of Chemical Engineering, Qinghai University, Xining 810016, China
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摘要 本研究成功制备了一种新型的用于萃取铷的冠醚功能化磁性固相纳米材料(CFE)。通过溶剂热法合成了Fe3O4纳米颗粒磁核,利用3-氨丙基三乙氧基硅烷在碱性环境下的酯水解反应,在磁核表面包覆SiO2并修饰氨基,制备了Fe3O4@SiO2-NH2中间产物,再利用4′-羧基苯并-18-冠6-醚上的羧基与修饰在Fe3O4@SiO2-NH2表面的氨基在1-乙基-(3-二甲基氨基丙基)碳二亚胺盐酸盐的催化下发生酰胺化反应,将该冠醚修饰在中间产物的表面,制备了CFE新型材料。分析了Fe3O4、Fe3O4@SiO2-NH2、CFE的微观形貌、磁化性质、X射线衍射性质、红外吸收性质、元素组成,佐证了材料被成功制备,验证了CFE对Rb+的萃取能力,研究了溶液pH对Rb+萃取效果的影响。结果表明,室温下萃取30 min,在pH为13时CFE对Rb+具有最佳的萃取效果,萃取率为90.0%。
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付华
陈慧媛
宋维君
赵云
关键词:    磁性固相萃取  冠醚  功能材料  纳米材料    
Abstract: In this study, a novel crown-ether-functionalized nano magnetic solid-phase extractant (CFE) for extracting Rb+ was successfully prepared by the following three steps. First, the magnetic core of Fe3O4 nanoparticles was synthesized by a solvothermal method. Second, the SiO2-NH2 group was coated on the surface of the magnetic core to prepare an intermediate product of Fe3O4@SiO2-NH2 by ester hydrolytic reaction of (3-aminopropyl)triethoxysilane in an alkaline environment. Third, the targeted functional group of crown ether was then modified on the surface of the intermediate product to prepare a novel CFE extractant by an amidation reaction between the carboxyl group in 4′-carboxybenzo-18-crown 6-ether and the amino group on Fe3O4@SiO2-NH2 under the catalysis of N-(3-Dimethylaminopropyl)-N′-ethylcarbodiimide hydrochloride. Then, the characteristics of micro morphology, magnetization, X-ray diffraction, infrared absorption, and elemental composition of the Fe3O4, Fe3O4@SiO2-NH2 and CFE were analyzed, which had lent support to the successful preparation of these materials. The extraction ability for Rb+ of this novel CFE material was verified. Moreover, the effect of solution pH on Rb+ extraction rate was explored, and the results showed that CFE had a best extraction rate of 90.0% for Rb+ at the pH 13 (at room temperature, extracting for 30 minutes).
Key words:  rubidium    magnetic solid phase extraction    crown ether    functional material    nanomaterial
出版日期:  2024-09-10      发布日期:  2024-09-30
ZTFLH:  O647.3  
基金资助: 青海省科技厅应用基础项目(2020-ZJ-702)
通讯作者:  *赵云,青海大学化工学院副教授。2017年毕业于北京理工大学,获得工学博士学位,主要从事盐湖化工与材料、近红外快速分析、化学反应动力学、化学反应热分析、合成工艺优化及放大、合成工艺安全性评估等研究。zhaoyun1003@163.com   
作者简介:  付华,青海大学化工学院化学工程系副教授,2018年6毕业于华东理工大学,获得理学博士学位,主要从事磁性功能化纳米材料、气凝胶材料、水凝胶材料的制备及在复杂基质中对目标化合物的分离富集研究。
引用本文:    
付华, 陈慧媛, 宋维君, 赵云. 一种新型的用于萃取铷的冠醚功能化磁性固相纳米材料[J]. 材料导报, 2024, 38(17): 22070038-6.
FU Hua, CHEN Huiyuan, SONG Weijun, ZHAO Yun. A Novel Crown-ether-functionalized Magnetic Solid-phase Nanomaterial for Extracting Rubidium. Materials Reports, 2024, 38(17): 22070038-6.
链接本文:  
http://www.mater-rep.com/CN/10.11896/cldb.22070038  或          http://www.mater-rep.com/CN/Y2024/V38/I17/22070038
1 Gao L, Ma G H, Zheng Y X, et al. Solvent Extraction and Ion Exchange, 2020, 38 (7), 753.
2 Zhang X F, Qin Z F, Aldahri T, et al. Journal of the Taiwan Institute of Chemical Engineers, 2020, 116, 43.
3 Chen W S, Lee C H, Chung Y F, et al. Metals, 2020, 10(5), 607.
4 Feng Z H, An L Y, Huang Z G, et al. Revue Roumaine De Chimie, 2020, 65(2), 141.
5 Bao A M, Qian Z Q. Journal of the Chemical Society of Pakistan, 2019, 41(6), 1004.
6 Yu C, Lu J, Hou Z Q, et al. Separation and Purification Technology, 2021, 255, 1.
7 Chen S Q, Qin X X, Gu W X, et al. Talanta, 2016, 161, 325.
8 Wen Q, Wang Y Z, Xu K J, et al. Analytica Chimica Acta, 2016, 939, 54.
9 Zhou Z Y, Hu Y L, Wang Z, et al. New Journal of Chemistry, 2021, 45(21), 9582.
10 Zheng X D, Wang Y Y, Qiu F X, et al. Journal of Chemical and Engineering Data, 2019, 64(3), 926.
11 Li H B, Qiao Y F, Li J, et al. Biosensors & Bioelectronics, 2016, 77, 378.
12 Wang C Q, Qian J, Wang K, et al. Biosensors & Bioelectronics, 2016, 77, 1183.
13 Wang Z, Zhang A Y, Su J T, et al. Journal of Radioanalytical and Nuclear Chemistry, 2021, 329(1), 359.
14 Lyu Y Z, Zhang A Y, Wang Y N, et al. Journal of Chemical and Engineering Data, 2020, 65(1), 198.
15 Nur T, Loganathan P, Johir M A H, et al. Separation and Purification Technology, 2018, 191, 286.
16 Din I U, Tasleem S, Naeem A, et al. Synthesis and Reactivity in Inorganic Metal-Organic and Nano-Metal Chemistry, 2016, 46(3), 405.
17 Lv Y W, Xing P, Ma B Z, et al. ACS Sustainable Chemistry & Engineering, 2020, 8(38), 14462.
18 Luo Y, Chen Q D, Shen X H. Separation and Purification Technology, 2019, 227, 1.
19 Huang D F, Zheng H, Liu Z Y, et al. Polish Journal of Chemical Technology, 2018, 20(2), 40.
20 Tang H H, Zhao L H, Sun W, et al. Hydrometallurgy, 2018, 175, 144.
21 Li Z, Pranolo Y, Zhu Z W, et al. Hydrometallurgy, 2017, 171, 1.
22 Liu S M, Liu H H, Huang Y J, et al. Transactions of Nonferrous Metals Society of China, 2015, 25(1), 329.
23 Mohite B S, Khopkar S M. Talanta, 1985, 32(7), 565.
24 Safarikova M, Safarik I. Journal of Magnetism and Magnetic Materials, 1999, 194(1-3), 108.
25 Bao J M, Sun C H, Li Y X, et al. Materials Reports, 2015, 29(20), 1 (in Chinese).
包建民, 孙超慧, 李优鑫, 等. 材料导报, 2015, 29(20), 1.
26 Li D J, Chen Y, Liu Z. Chemical Society Reviews, 2015, 44(22), 8097.
27 Sun A J, Fang F. Materials Reports, 2014, 28(4), 72 (in Chinese).
孙爱娟, 方芬. 材料导报, 2014, 28(4), 72.
28 Xing P, Wang C Y, Chen Y Q, et al. Hydrometallurgy, 2021, 203, 1.
29 Wang X L, Fu Y B, Liu Y N, et al. Journal of Nuclear and Radiochemistry, 1996, 18(1), 21 (in Chinese).
汪小琳, 傅依备, 刘亦农, 等. 核化学与放射化学, 1996, 18(1), 21.
30 Wang W J, Chen B Z, Dai X N, et al. Journal of Nuclear and Radiochemistry, 1980, 2(3), 153 (in Chinese).
王文基, 陈伯忠, 戴鲜宁, 等. 核化学与放射化学, 1980, 2(3), 153.
31 Du Y, Chen X M, Chen W J, et al. Journal of Wuhan University of Technology, 2004, 26(7), 52 (in Chinese).
杜瑛, 陈兴明, 陈文浚, 等. 武汉理工大学学报, 2004, 26(7), 52.
32 Laffafchi F, Tajbakhsh M, Sarrafi Y, et al. Journal of Separation Science, 2022, 45(15), 3005.
33 Mousa E, Haroun M M, Nasr G M. Journal of Materials Science-Materials in Electronics, 2021, 32(8), 10101.
34 Ferrer C, Isasi J, Arevalo P, et al. Journal of Alloys and Compounds, 2022, 899, 1.
35 Yari M, Shiri L, Rostami H. Chemistryselect, 2022, 7(19), 1.
36 Ge Y Q, Li C P, Waterhouse G I N, et al. Ceramics International, 2021, 47(2), 1728.
37 Yong T T, Zhao C X, Peng C J, et al. Journal of East China University of Science and Technology, 2019, 45(1), 58 (in Chinese).
雍婷婷, 赵成蹊, 彭昌军, 等. 华东理工大学学报(自然科学版), 2019, 45(1), 58.
38 Visser A E, Swatloski R P, Reichert W M, et al. Industrial & Engineering Chemistry Research, 2000, 39(10), 3596.
39 Li C P, Xin B P, Xu W G, et al. The Chinese Journal of Process Engineering, 2007, 7(4), 674 (in Chinese).
李长平, 辛宝平, 徐文国, 等. 过程工程学报, 2007, 7(4), 674.
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