费 旭 主 要 研 究 成 果



教师简介

费旭

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费旭,女,教授研究员级高级实验师,硕士生导师。19782月出生。2000年毕业于辽宁石油化工大学,获应用化学学士学位;2008年毕业于吉林大学,获高分子化学与物理博士学位,硕博连读。2014年完成大连医科大学和大连医诺生物有限公司联合招收的博士后工作。

联系电话:0411-86323691-201

电子邮箱:feixudlpu@163.comfeixu@dlpu.edu.cn

学历

2003.9-2008.6博士研究生 (硕博连读)吉林大学

工作经历

2000.7-2003.7 中国石化抚顺石油化工研究院

2009.3-2013.7 大连工业大学   讲师

2013.7-2018.11 大连工业大学   副教授

2018.11-至今   大连工业大学   教授研究员级高级实验师 

承担课题项目

国家自然科学基金项目

可紫外写入的氟取代含铒聚合物波导放大器材料的设计合成(21204007),国家自然科学基金青年基金项目, 2013/01-2015/12,费旭主持。

省部级项目

1、辽宁省教育厅项目“固定化脂肪酶催化合成改性淀粉的研究” J2020058);2020/05-2022/5; 费旭主持。

2、辽宁省教育厅项目“二次固定化超分子组装酶的制备与连续催化特性的研究” 2017J078);2017/01-2019/12; 费旭主持。

3、辽宁省科学技术基金项目“用于组织工程支架的可标记3D打印水凝胶的合成研究”20170540079);2017/05-2019/4; 费旭主持。

4、辽宁省高等学校优秀人才支持计划项目“生物酶催化合成硝基不饱和脂肪酸的研究”(LJQ2014054); 2015/01-2016/12; 费旭主持。

5、辽宁省教育厅项目“感光的聚合物波导放大器材料研究”(L2011080); 2011/01-2013/12;费旭主持。

科研获奖

1.  大连市科技进步二等奖“生物酶催化合成硝基不饱和脂肪酸”2018年 主持完成

2.  辽宁省科学技术进步二等奖“燕麦β-葡聚糖的高效提取及生物转化”2013年 参与完成

3.  大连市科技进步一等奖“燕麦β-葡聚糖的高效提取及生物转化”2013年 参与完成

发明专利

 

1费旭,支慧,田晶,李尧,张海洋,赵丽媛,徐龙权,王一.一种含蛋白酶-无机杂化纳米花的水凝胶及其制备方法和应用,2020.10.13,中国,ZL 2017 11407474.8

2费旭,范东风,王秀英,田晶,徐龙权,王一.一种光致发光的含铕聚合物水凝胶材料的合成方法,2017.8,中国,ZL 2015 10713329.7已转让

3费旭,王秀英,田晶,徐龙权,王一. 一种合成可紫外写入含氟含铒聚合物波导放大器材料的方法,2017.2,中国,ZL 2014 10668827.X

4费旭 吴文忠. 一种制备硝基油酸和硝基油酸甲酯的方法,2016.1.20,中国,ZL.2013 10410312.5.

5费旭,王秀英,田晶,徐龙权,王一. 制备网络互穿的聚乙烯醇 /二氧化硅复合涂层的方法,2014.10,中国,ZL 2013 10012729.6.

6.田晶,张海洋,费旭,李尧,徐龙权,王一.一种含木瓜蛋白酶的铁-铜复合磁性纳米花及其制备方法和应用,2022.6.28,中国,ZL20181164561.2.

7.李尧,房换,费旭,田晶,徐龙权.一种含咪唑溴盐的抗菌水凝胶敷料及其制备方法和应用,2021.5.14,中国,ZL201910017253.2.

8.李尧,王康,费旭,田晶,吴文忠,徐龙权.一种抗菌水凝胶材料及其制备方法和应用,2021.6.18,中国,ZL20181338182.8.

9. 田晶,井木子,费旭,李尧,任伟帆,赵丽媛,徐龙权,王一.一种含脂肪酶-无机杂化纳米花的水凝胶及其制备方法和应用,2020.11.06,中国,ZL 2017 111407472.9.

10.王秀英,张峰,董晓丽,费旭.一种制备锂掺杂石墨相氮化碳材料的方法.2019.2.19,中国,ZL201610700771.0.

11.崔占臣,万莹,史作森,费旭“高含氟负性光刻胶及其在聚合物光波导器件中的应用”2011.12,中国, ZL2010 10252529.2.

11.崔占臣,费旭,万莹,胡娟“负性含氟光刻胶组合物及在聚合物光波导器件中的应用”2010.11.03中国,ZL 2008 10050520.8.

出版著作

费旭. 现代仪器分析,化学工业出版社,2012年,参编

文章  

 

1.         Zhengqiang Qin, Nuan Feng, Yao Li, Xu Fei*, Jing Tian*, Longquan Xu, Yi Wang, “Hydrogen-bonded lipase-hydrogel microspheres for esterification application”, Journal of Colloid and Interface Science, 2022, 606, 1229–1238.

2.         Zhengqiang Qin, Nuan Feng, Yuan Ma, Yao Li, Longquan Xu, Yi Wang, Xu Fei* ,Jing Tian*, “A lipase/poly (ionic liquid)-styrene microspheres/PVA composite hydrogel for esterification application”, Enzyme and Microbial Technology, 2022, 152,109935.

3.         Yonghui Zhou, Xu Fei*, Jing Tian*, Longquan Xu, Yao Li*, “A ionic liquid enhanced conductive hydrogel for strain sensing applications”, Journal of Colloid and Interface Science, 2022, 606, 192–203.

4.         Dongrun Li, Xu Fei*, Kang Wang, Longquan Xu, Yi Wang, Jing Tian*, Yao Li *, “A novel self-healing triple physical cross-linked hydrogel for antibacterial dressing” Journal of Materials Chemistry B, 2021, 9, 6844–6855.

5.         Yuan Ma, Yao Li, Xu Fei*, Jing Tian*, Longquan Xu, Yi Wang, “Synthesis of papainpolyacrylamide hydrogel microspheres and their catalytic application” New Journal Chemistry, 2021,45, 16696.

6.         Yuxuan Wu, Jihui Wang, Lin Li, Xu Fei*, Longquan Xu, Yi Wang, Jing Tian*, Yao Li*, “A novel hydrogel with self-healing property and bactericidal activity”, Journal of Colloid and Interface Science, 2021, 584, 484-494.

7.         Huan Fang, Dongrun Li, Longquan Xu, Yi Wang, Xu Fei*, Jing Tian*, Yao Li* “A reusable ionic liquid-grafted antibacterial cotton gauze wound dressing”, J Mater Sci, 2021, 56, 7598–7612.

8.         Nuan Feng, Haiyang Zhang, Yao Li, Yangkaixi Liu, Longquan Xu, Yi Wang, Xu Fei*, Jing Tian*, “A novel catalytic material for hydrolyzing cow’s milk allergenic proteins: Papain-Cu3(PO4)2·3H2O-magnetic nanoflowers”, Food Chemistry, 2020, 311, 125911.

9.         Kang Wang, Jihui Wang, Lin Li, Longquan Xu, Nuan Feng, Yi Wang, Xu Fei*, Jing Tian*, Yao Li*, “Novel Nonreleasing Antibacterial Hydrogel Dressing by a One-Pot Method”, ACS Biomaterials. ScienceEngineering, 2020, 6, 1259−1268.

10.     Liyuan Zhao, Jing Tian, Yangkaixi Liu, Longquan Xu, Yi Wang, Xu Fei *, Yao Li*, “A novel floatable composite hydrogel for solar evaporation enhancement”, Environmental Science Water Research & Technology, 2020, 6, 221–230.

11.     Yangkaixi Liu,Jing Tian,c Longquan Xu, Yi Wang, Xu Fei *, Yao Li, Multilayer graphite nano-sheet composite hydrogel for solar desalination systems with floatability and recyclability”, New Journal Chemistry, 2020,44, 20181.

12.     Kang Wang, Jihui Wang, Lin Li, Longquan Xu, Nuan Feng, Yi Wang, Xu Fei*, Jing Tian*, Yao Li*, “Synthesis of a novel anti-freezing, non-drying antibacterial hydrogel dressing by one-pot method”, Chemical Engineering Journal, 2019, 372, 216-225.

13.     Huan Fang, Jihui Wang, Lin Li, Longquan Xu, Yuxuan Wu, Yi Wang, Xu Fei*, Jing Tian*, Yao Li* “A novel high-strength poly(ionic liquid)/PVA hydrogel dressing for antibacterial applications” Chemical Engineering Journal, 2019, 365, 153-164.

14.     Liyuan Zhao, Peisen Wang, Jing Tian, Jihui Wang, Lin Li, Longquan Xu, Yi Wang, Xu Fei*, Yao Li “A novel composite hydrogel for solar evaporation enhancement at air-water interface” Science of the Total Environment, 2019, 668, 153–160.

15.     Weifan Ren, Yao Li, Jihui Wang, Lin Li, Longquan Xu, Yuxuan Wu, Yi Wang, Xu Fei*, Jing Tian*, Synthesis of magnetic nanoflower immobilized lipase and its continuous catalytic application, New Journal Chemistry, 2019, 43, 11082--11090.

16.     Haiyang Zhang, Xu Fei*, Jing Tian*, Yao Li, Hui Zhi, Kang Wang, Longquan Xu, Yi Wang “Synthesis and continuous catalytic application of alkaline protease nanoflowers–PVA composite hydrogel” Catalysis Communications, 2018, 116, 5-9.

17.     Weifan Ren, Xu Fei,* Jing Tian,* Yao Li, Muzi Jing, Huan Fang, Longquan Xu , Yi Wang, “Multiscale immobilized lipase for rapid separation and continuous catalysis” New Journal Chemistry, 2018, 42, 13471-13478.

18.     Hui Zhi, Xu Fei,* Jing Tian,* Liyuan Zhao, Haiyang Zhang, Muzi Jing, Longquan Xu, Yi Wang, Yao Li*, “A novel high-strength photoluminescent hydrogel for tissue engineering” Biomaterial Science, 2018, 6, 2320–2326.

19.     Muzi Jing, Yang Fu, Xu Fei,* Jing Tian,* Hui Zhi, Haiyang Zhang, Longquan Xu, Xiuying Wang,Yi Wang, A novel high-strength polymer hydrogel with identifiability prepared via a one-pot method Polymer Chemistry, 2017, 8, 3553–3559.

20.     Hui Zhi, Xu Fei* , Jing Tian,* Muzi Jing, Longquan Xu, Xiuying Wang, Dongmei Liu, Yi Wang, Jingyun Liu A novel transparent luminous hydrogel with self-healing property Journal of Materials Chemistry B, 2017,5, 5681-5900.

21.     Muzi Jing, Xu Fei*, Weifan Ren, Jing Tian,* Hui Zhi, Longquan Xu, Xiuying Wang, Yi Wang “Self-assembled hybrid nanomaterials with alkaline protease and a variety of metal ions”, RSC Advances, 2017, 7, 48360–48367.

22.     Dongfeng Fan, Xu Fei*, Jing Tian, Hui Zhi, Longquan Xu, Xiuying Wang, Yi Wang, 1. “Synthesis and investigation of a novel luminous hydrogel”, Polymer Chemistry, 2016, 7,3766-3772.

23.     Yue Li, Xu Fei*, Liwen Liang, Jing Tian*, Longquan Xu, Xiuying Wang, Yi Wang, “The influence of synthesis conditions on enzymatic activity of enzyme-inorganic hybrid nanoflowers” Journal of Molecular Catalysis B: Enzymatic, 2016, 133, 92-97.

24.     Dongfeng Fan, Xu Fei*, Jing Tian, Longquan Xu, Xiuying Wang, Shuqi Fan, Yi Wang “Synthesis and investigation of an erbium-containing photosensitive polymer”, Polymer Chemistry, 2015, 6, 5430-5436.

25.     Yi Yu, Xu Fei*, Jing Tian*, Longquan Xu, Xiuying Wang, Yi Wang, “Self-assembled enzyme–inorganic hybrid nanoflowers and their application to enzyme purification”, Colloids and Surfaces B: Biointerfaces, 2015, 130, 299-304.

26.     Liwen Liang, Xu Fei*, Yue Li, Jing Tian*, Longquan Xu, Xiuying Wang, Yi Wang, “Hierarchical Assembly of EnzymeInorganic Composite Materials with Extremely High Enzyme Activity” , RSC Advances, 2015, 5, 96997-97002.

27.     Shuqi Fan, Xu Fei*, Xiuying Wang, Jing Tian, Longquan Xu, Peng Yang, Yi Wang, “Synthesis and investigation of a photosensitive, europium-containing polymer”, Reactive & Functional Polymers, 2014, 76, 19-25.

28.     Jing Li, Jing Tian*, Xu Fei*, Xiuying Wang, Longquan Xu, Yi Wang, “Enzymatic nitration of the oleic acid derivatives: Synthesis, isolation and characterization”, Journal of Molecular Catalysis B: Enzymatic, 2013, 98, 87-91.

29.     张梦娟, 费旭*,田晶,范叔奇,王一. “网络互穿的固相微萃取聚乙烯醇复合涂层的制备”. 高等学校化学学报, 2013. 34(3): 698-702.

30.     Xu Fei*, Yuan Shi, Yang Cao. “Synthesis of photosensitive poly(methyl methacrylate-co-glycidyl methacrylate) for optical waveguide devices” Applied physics A Materials Science Processing, 2010, 100, 409-414.

31.     Xu Fei, Ying Wan, Haiming Zhang, Zhanchen Cui*, Daming Zhang. “Synthesis of a fluorinated photoresist for optical waveguide devices” Applied physics A Materials Science Processing, 2009, 96, 467-472.

32.     Xu Fei, Juan Hu, Haiming Zhang, Pengyu Sha, Jicheng Piao, Zhanchen Cui*, Daming Zhang, “Synthesis of Crosslinkable Fluorinated Polyesters for Optical Waveguide Devices” Journal of Polymer Science, Part A: Polymer Chemistry, 2007, 45, 5923-5931.

33.     Ying Wan, Xu Fei, Zuosen Shi, Juan Hu, Xiaolong Zhang, Lisha Zhao, Changming Chen, Zhanchen Cui*, Daming Zhang, “Highly Fluorinated Low-Molecular-Weight Photoresist for Optical Waveguides” Journal of Polymer Science, Part A: Polymer Chemistry, 2011,49, 762-769.

34.     Yang Zhang, Xu Fei, Gang Zhang, Hongtao Li, Ke Shao, Jing Zhu, Chengji Zhao, Zhongguo Liu, Miaomiao Han, Hui Na*, “ Preparation and properties of epoxy-based cross-linked sulfonated poly(arylene ether ketone) proton exchange membrane for direct methanol fuel cell applicationsInternational Journal of Hydrogen Energy, 2010, 35(12), 6409-6417.

35.     Xiuying Wang, Jing Wang, Xiaoli Dong*, Feng Zhang, Linge Ma, Xu Fei, Xiufang Zhang, Hongchao Ma. “Synthesis and catalytic performance of hierarchical TiO2 hollow sphere/reduced graphene oxide hybrid nanostructures”, Journal of Alloys and Compounds, 2016, 656, 181-188.

36.     Jing Wang, Xiuying Wang*, Xiaoli Dong*, Xiufang Zhang, Hongchao Ma, Xu Fei. “Multilayered TiO2@SnO2 hollow nanostructures: facile synthesis and enhanced photocatalytic performance”, RSC Adv., 2014, 4, 59503-59507.

37.     Wenzhe Ma, Xiuying Wang*, Feng Zhang, Xu Fei, Xiufang Zhang, Hongchao MaXiaoli Dong*. “Synergetic effect of Li doping and Ag deposition for enhanced visible light photocatalytic performance of g-C3N4”, Materials Research Bulletin, 2017, 86, 72-79.

38.     Yang Zheng, Changming Chen*, Yunlong Gu, Jihou Wang, Shouzhuo Yang, Xu Fei, Xibin Wang, Yunji Yi, Xiaoqiang Sun, Fei Wang, Daming Zhang. Metal-cladding directly defined active integrated optical waveguide device based on erbium-containing polymer”, RSC Adv., 2016, 6, 3224–3230. (SCIIF=3.8

39.     Zhe Tang, Yi Wang*, Xiaolei Cui, Ying Yang, Jing Tian, Xu Fei, Shuangjiang Lv*. “Theoretical study of the effect of ligand topology on Fe(IV)O and Ru(IV)O complex reactivities”, Inorganica Chinmica Acta., 2016,443, 235-242.

40.     Wang Yi*, Liu Yuan, Yang Kun, He Zhengwen, Tian Jing, Fei Xu, Guo Hong, Wang Yong*. “What factors influence the reactivity of C-H hydroxylation and C=C epoxidation by [FeIV(Lax)(1,4,8,11-tetramethyl-1,4,8,11-tetraazacyclotetradecane) (O)]n+”, J Biol Inorg Chem, 2015, 20, 1123-1134.

41.     Yuan Liu, Jinfeng Zhao, Yi Wang*, Jing Tian, Xu Fei, Hongying Wang, Theoretical study of excited state intramolecular proton transfer (ESIPT) mechanism for a fluorophore in the polar and nonpolar solvents, Journal of Molecular Liquids, 233 (2017) 303-309.

42.     Yuan Liu, Zhe Tang, Yi Wang*, Jing Tian, Xu Fei, Fang Cao, GuangYue Li, Theoretical study of excited-state proton transfer of 2,7-diazaindole•(H2O)2 cluster via hydrogen bonding dynamics, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 187 (2017) 163-167.

43.     Zhe Tang, Yunfan Yang, Yi Yang, Yi Wang*, Jing Tian, Xu Fei, Theoretical investigation of twisted charge-transfer-promotedintramolecular proton transfer in the excited state of 4’-dimethylaminoflavonol in a highly polar solvent, Journal of Luminescence, 194 (2018) 785-790.

44.     Zhe Tang, Yutai Qi, Yi Wang*, Panwang Zhou*, Jing Tian, Xu Fei, Excited-State Proton Transfer Mechanism of 2,6-Diazaindoles•(H2O)n(n = 2−4) Clusters, The Journal of Physical Chemistry B, 122 (2018)3988-3995.