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1.Fuqiu Ma, Xili Lu*, Zhaomin Wang, Zhijie Sun, Fengfa Zhang, Yufeng Zheng. Nanocomposites of Poly(L-lactide) and Surface Modified Magnesia Nanoparticles: Fabrication, Mechanical property and Biodegradability. Journal of Physics and Chemistry of Solids, 2011,72(2): 111-116.
2.Ma F Q*, Liu X L, Liu D, Li L, Zhang H F, Zheng Y F. Effect of C2H2 flow rate on the deposition of Ti-TiC-TiC/DLC gradient nano-composite film on NiTi alloy. International Journal of Modern Physics B, 2010, 24(15-16): 2357-2362.
3.Ma F Q*, Liu X L, Liu D, Li L, Zheng Y F. Effect of C2H2 flow rate on the deposition of Zr-ZrC-ZrC/DLC gradient nano-composite film on biomedical NiTi alloy. Materials Science Forum, 2009, 610-613: 1308-1311.
4.马福秋,夏虹,薛云,矫彩山,李响,刘鹏. 核化工与核燃料工程专业卓越工程师培养过程班主任工作探析. 教育现代化,2019.1(05):85-87,95.
5.Fuqiu Ma,Tingting Liu, Yun Xue, Caishan Jiao, Boran Dong.Study on Highly Efficient Adsorbent for the Radioactive Waste Containing Uranium. GLOBAL2017.Seoul,Korea,September 24-29,2017.
6.Fuqiu Ma, Yunyang Gui, Peng Liu, Yun Xue*, Wei Song*, Functional fibrous materials-based adsorbents for uranium adsorption and environmental remediation, Chemical Engineering Journal, 2020, 390(2): 124597.
7.Fuqiu Ma, Boran Dong, Yunyang Gui, Meng Cao, Lei Han, Caishan Jiao, Huitao Lv, Junjun Hou,and Yun Xue*, Adsorption of Low-Concentration Uranyl Ion by Amidoxime Polyacrylonitrile Fibers. Industrial & Engineering Chemistry Research, 2018.12.3, 57(51): 17384-17393.
8.Fuqiu Ma, Jinru Nian, Changlong Bi, Ming Yang, Chunhong Zhang *, Lijia Liu, Hongxing Dong, Mingxin Zhu, Boran Dong, Preparation of carboxylated graphene oxide for enhanced adsorption of U(VI) , Journal of Solid State Chemistry, 2019, 277: 9-16.
9.Lijia Liu, Yueguang Fang, Yujiang Meng, Xinyi Wang, Fuqiu Ma*, Chunhong Zhang*, Hongxing Dong, Efficient adsorbent for recovering uranium from seawater prepared by grafting amidoxime groups on chloromethylated MIL-101(Cr) via diaminomaleonitrile intermediate, Desalination, 2019, 478(2): 114300.
10.Yun Xue,Meng Cao,Jianzhang Gao,Yunyang Gui,Jiaqi Chen,Peng Liu,Fuqiu Ma*,Yongde Yan*,Min Qiu, Electroadsorption of uranium on amidoxime modified graphite felt, Separation and Purification Technology, 2020 (255): 117753.
11.Yusof A. Y. A.Mohammed, Fuqiu Ma*, Lijia Liu*, Chunhong Zhang, Hongxing Dong, Qiang Wang*, Xiaodong Xu, Abdulrakib Abdelwahab Al?Wahbi, Preparation of electrospun polyvinylidene fluoride/amidoximized polyacrylonitrile nanofibers for trace metal ions removal from contaminated water, Journal of Porous Materials, 2020,28(2),383-392.
12.Douchao Mei, Huan Li, Lijia Liu*, Lichao Jiang, Chunhong Zhang, Xinrui Wu, Hongxing Dong*, Fuqiu Ma*, Efficient uranium adsorbent with antimicrobial function: Oximefunctionalized ZIF-90, Chemical Engineering Journal, 2021, 425: 130468.
13.ChanglongBi,chunhongZhang*,FuqiuMa**,XuZhang,MingYang,JinruNian,LijiaLiu,HongxingDong,LienZhu,QiangWang***,ShixiGuo,QingtaoLv, Growth of a mesoporous Zr-MOF on functionalized graphene oxide as an efficient adsorbent for recovering uranium (VI) from wastewater, Microporous and Mesoporous Materials, 2021, 323: 111223.
14.Yao Tian, Lijia Liu*, Fuqiu Ma**, Xiying Zhu, Hongxing Dong,***, Chunhong Zhang, Fangbo Zhao, Synthesis of phosphorylated hyper-cross-linked polymers and their efficient uranium adsorption in water, Journal of Hazardous Materials, 2021, 419: 126538.
15.Douchao Mei , Lijia Liu **, Huan Li, Yudan Wang*, Fuqiu Ma**, Chunhong Zhang, Hongxing Dong, Efficient uranium adsorbent with antimicrobial function constructed by grafting amidoxime groups on ZIF-90 via malononitrile intermediate, Journal of Hazardous Materials, 2021, 422: 126872.
16.Yujiang Meng, Yudan Wang*, Lijia Liu**, Yueguang Fang, Fuqiu Ma**, Chunhong Zhang, Hongxing Dong, Efficient and magnetically recoverable U (VI) adsorbent: Fe3O4 loaded hypercrosslink copoly (styrene/maleic anhydride), Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2021, 632: 127644.
17.Peng Liu, Hui Ruan, Tiantian L, Jiaqi Chen , Fuqiu Ma*, Duoqiang Pan *, Wangsuo Wu, Yongde Yan*, Min Qiu, Removal of Cu(II) Contamination from Aqueous Solution by Ethylenediamine@β-Zeolite Composite, Molecules, 2021,26(4):978.
18.Peng Liu, Qiang Yu, Xu Zhang, Jiaqi Chen, Yun Xue, Fuqiu Ma*, Removal of U(VI) from aqueous solution using AO?artificial zeolite, Journal of Radioanalytical and Nuclear Chemistry, 2020, 327(1):39-47.
19.Peng Liu, Qiang Yu, Yun Xue, Jiaqi Chen, Fuqiu Ma*, Adsorption performance of U(VI) by amidoxime?based activated carbon, Journal of Radioanalytical and Nuclear Chemistry, 2020, 324(2): 813-822.
20.Peng Liu*, Yun Xue, Fuqiu Ma*, The influence of pH, contact time, ionic strength, temperature, and fullerene on the adsorption of Cu(II) onto magnetic multi-walled carbon nanotubes, Fullerenes, Nanotubes and Carbon Nanostructures, 2019.27(3): 317-322.
21.Yun Xue, Jianzhang Gao, Zhenchao Ma, Jiadong Wang, Meng Cao, Chen Guo, Peng Liu, Fuqiu Ma*, Yongde Yan*, and Min Qiu, An Efficient System for Uranyl Electrodeposition and Investigation of the Uranyl Electrochemical Behavior, Journal of The Electrochemical Society, 2021, 168(11):112508.
22.Gege Zhang, Yueguang Fang, Yudan Wang*, Lijia Liu*, Douchao Mei, Fuqiu Ma*, Yujiang Meng, Hongxing Dong, Chunhong Zhang, Synthesis of amino acid modified MIL-101 and efficient uranium adsorption from water, Journal of Molecular Liquids, 2021, 425:130468.
23.Changlong Bi,chunhong Zhang*,Fuqiu Ma*,Lien Zhu,Ruiqi Zhu,Qi Qi,Lijia Liu,Hongxing Dong,Development of 3D porous Ag+ decorated PCN-222 @ grapheme oxide-chitosan foam adsorbent with antibacterial property for recovering U(VI) from seawater,Separation and Purification Technology,2022,281:119900.
24.Yun Xue,Wanting Cheng,Meng Cao,Jianzhang Gao,Jiaqi Chen,Yunyang Gui,Wenmin Zhu,Fuqiu Ma*, Development of nitric acid?modified activated carbon electrode for removal of Co2+/Mn2+/Ni2+ by electrosorption, Environmental Science and Pollution Research, 2022.6,29 (51) :77536-77552
25.Peng Liu, Zhuang Shen, Jiaxian Cheng, Zhen Han, Wenda Xu, Mingbo Ji* and Fuqiu Ma*, 1-aza-18-crown-6 ether tailored graphene oxide for Cs(I) removal from wastewater, RADIOCHIMICA ACTA, 2022.10,111 (1):63-71