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教师信息

陈萍华

来源: 发布时间:2018-08-15 13:12:27 浏览次数: 【字体:


微纳米材料科学与工程博士、教授、硕士生导师。

研究方向:主要从事新能源和功能纳米材料相关领域的研究工作,包括利用光电催化材料进行能源化转换,纳米吸附材料、电催化与检测等技术消除及转化环境污染物等方面。

电子邮件:cph1979@126.com

教育经历:

[1] 2010-2015年,南昌大学,材料科学与工程学院微纳米材料科学与工程专业,获工学博士学位

[2] 2003-2006年,南昌大学,理学院有机化学专业,获硕士学位,有机化学方向

[3] 1999-2003年,南昌大学,化学与材料工程学院应用化学系,获学士学位

工作经历:  

2006至今 南昌航空大学环境与化学工程学院

[1] 2006.7-2009.7 南昌航空大学 助教

[2] 2009.7-2018.12 南昌航空大学 讲师

[3] 2019-2024.11    南昌航空大学 副教授

[4] 2024.11-至今    南昌航空大学 教授

[5] 2015.1-2016.1,美国纽约大学化学系,访问学者,合作导师:N. Seeman教授

人才称号:

物理化学》江西省级精品在线开放课程,负责人

江西省赣鄱俊才主要学科学术和技术带头人——领军人才(产学研类)

学术兼职:

[1] 《稀土学报》(英文版Journal of Rare Earth, SCI Q1)青年编委

[2] 《亚太环境科学与工程期刊》编委

[3] 中国化学会会员

[4] 中国稀土学会会员

[5] 中国产学研合作促进会会员

[6] 参编RSC出版社英文专著“Emerging Nanotechnologies for Water Treatment”

[7]《当代化工研究》编委

[8] 江西省土壤科学技术学会理事

[9]江西省环保厅环境损害司法鉴定机构登记评审专家

科研/教学奖励:

[1] 陈萍华(排名第1)。新型靶向型纳米吸附剂的关键技术及其在污染物资源化的应用。中国商业联合会服务业科技创新奖 全国服务业科技创新奖一等奖。中国商业联合会。2021.12

[2] 陈萍华(排名第1)。纳米材料有效固载酶催化剂的研发及其催化性能应用, 中国发明协会, 其他, 省部二等奖, 2020

[3] 陈萍华(排名第2); 垃圾焚烧发电厂飞灰污染物去除及资源化的技术研发与产品应用, 中国产学研合作促进会, 科技进步, 省部二等奖, 2019

[4] 陈萍华(排名第3); 典型柔性和刚性纳米复合材料的增效机制及污染物治理新方法, 江西省人民政府, 江西省自然科学三等奖, 2021

[5] 陈萍华(排名第1)。《物理化学》江西省级精品在线开放课程,负责人:陈萍华, 2020.

[6] 陈萍华(排名第1)。《物理化学》课程获得防疫期间线上教学优质课。省级优秀奖。2019.

[7] 舒红英、陈萍华。《物理化学实验》教材获得2019年中国石油和化学工业优秀出版物奖教材奖二等奖。省部级二等奖。2019.

[8] 陈萍华(排名第3).物理化学本科教学团队获得江西省高水平本科教学团队2020.

[9] 陈萍华。南昌航空大学第二届教学创新大赛二等奖(物理化学)2022.

[10] 陈萍华. 校青年教师讲课比赛一等奖(讲授物理化学)2019

[11] 陈萍华(排名第1). 思政引领《物理化学》三位一体教学模式的探索与实践.校教学成果奖二等奖 2023

[12] 陈萍华(排名第2). 《物理化学》获批国家级一流本科课程  2023.4

[13] 陈萍华. 校青年教师讲课比赛一等奖(讲授物理化学实验) 2011

[14] 陈萍华. 五次获得校优秀主讲教师,2013-2022.

[15] 陈萍华. 省级和校级优秀硕士论文指导教师(指导研究生:王涛)

[16] 陈萍华. 优秀班主任,2013

[17] 陈萍华. 校教学成果一等奖(2010,参与第3

[18] 陈萍华. 校教学成果二等奖(2016,排名第1

讲授课程:

物理化学、物理化学A、物理化学实验1、物理化学实验2、材料化学基础实验等

主持或参与的代表性科研项目:

[1] 主持国家基金项目(面上项目)吸附-光催化协同增效体系的构建及其对典型PPCPs消减机制研究,编号:420771622021.01.012024.12.30.

[2]主持国家基金项目:基于铈镧的纳米复合材料的制备及其深度净化低氟污水的机制研究,编号:516680462017.01-2020.12.  

[3]主持江西省自然科学基金重点项目:空心钴基复合材料光催化体系的构建及其降解新兴污染物与同步产氢性能研究,编号:20224ACB2030142023.1-2026.12.

[4]主持完成了南昌航空大学学校基金项目课题,壳聚糖有机硅表面活性剂的合成及应用研究,编号:EC2009022372009.10.052010.12.30

[5]主持完成江西省教改课题, 进阶型《物理化学实验》教学体系的构建与实践,编号:JXJG-12-7-152012.092014.09

[6]主持完成南昌航空大学博士启动金项目:稀土掺杂复合材料对低氟污水的净化作用研究,编号:EA2016020422016.1-2018.12.

[7]主持完成江西省持久性污染物控制与资源循环利用重点实验室2015年开放基金项目:特异性显色吸附剂去除废水中镉的研究编号:ST2014220152015.01-2016.12.

[8]主持完成江西省青年科学基金青年基金项目:铬离子显色印迹吸附剂的性能及机理研究,编号:20161BAB2161022016-01-01 2018-01-01

[9]主持省教育厅科研项目:新型镉离子表面印迹吸附剂的性能及机理研究,编号:DA201702349 2017.06-2018.12.

[10]主持江西省研究生教改重点课题, 三全育人视域下四位一体协同育人模式的构建与实践,编号:JXYJG-2022-1352022.102024.10

[11]主持校教改课题, “OBE 理念下物理化学实验四位一体教学模式的构建与实践,编号:JY220172022.102024.10

[12]主持校课程思政示范课程, 物理化学A”,编号:SZ22142022.122023.12

[13]参与江西省教育厅基金项目,BCC 相铌合金氢分离性能的高通量计算. 编号:GJJ22011212022-01-012023-12-31;(排名第3

[14]参与国家基金项目(面上项目):重金属显色吸附-有机物光催化降解协同增效体系的构建及其作用机制研究,编号为:519783232020-1-12023-12-30;(排名第2

[15]参与完成国家基金项目:可视化离子印迹材料选择性净化水体中重金属作用机理研究,编号为:515680512016-1-12019-12-30;(排名第2

[16]参与完成江西省自然科学基金重点项目:低浓度目标稀土离子的特异性同步检测和回收,编号为:20171ACB21034,经费来源:江西省科技厅,2017.1-2021.12;(排名第2

[17]参与完成国家基金项目:基于CYP119的新型光催化体系设计及其降解微污染水体中有机氯的研究,编号为:513680442014-1-12017-12-30;(排名第2

[18]参与完成省科技攻关项目:高效氟离子纳米吸附材料的研制及回收工业高氟废水中氟的新技术研究,编号为:20151BBG700182015-4-142017-12-30;(排名第2

[19]参与完成上海航天基金项目:耐高温隔热锆基纳米复合陶瓷的层层自组装合成及强韧化(上海航天基金) ” ,编号为:SAST2014592014-9-12016-8-30;(排名第2

[20]参与完成江西省自然科学基金项目:氯酚类污染物的P450酶催化脱氯机制研究,编号为:20132BAB2130162013-4-282014-12-30;(排名第2

[21]参与完成国家高技术研究发展计划(863计划)课题,高性能稀土复合钇锆结构陶瓷产业化制备及应用技术,编号:2010AA03A4082010-1-12012-12-30

[22]参与完成国家基金项目,手性稀土金属有机框架材料的设计合成及其性能研究,编号:211010902011-1-12013-12-30,负责稀土金属有机框架材料的性能研究

代表性论文:

[1] Hualin Jiang, Qi Ke, Xianhua Qiu, Jiezeng Chen, Pinghua Chen*, Shuai Wang, Xubiao Luo, Bingying Rao. NiCo layered double hydroxide nanocages for high-performance asymmetric supercapacitors. Inorganic Chemistry Frontiers, 2023, 10: 2154-2164. SCI 1区,热点论文)

[2] Pinghua Chen, Mengxue Wang, Guifang Li, Hualin Jiang*, Abdolreza Rezaeifard, Maasoumeh Jafarpour, Guanghui Wu, Bingying Rao. Construction of ZIF-67-On-UiO-66 catalysts as a platform for efficient overall water splitting. Inorganic Chemistry, 2022, 61(46): 18424-18433.SCI 2区)https://doi.org/10.1021/acs.inorgchem.2c02522

[3] Zhihai Wu, Ziying Chen, Jia Chen*, Xiaofeng Ning, Pinghua Chen*, Hualin Jiang, Hongdeng Qiu*. Enhanced adsorption and synergistic photocatalytic degradation of tetracycline by MOF-801/GO composites via solvothermal synthesis. Environ. Sci.: Nano, 2022, 9: 4609-4618. The article was first published on 07 Nov 2022. SCI 2区)

[4] Pinghua Chen, Xueqing Duan, Guifang Li, Xianhua Qiu, Shuai Wang, Yiping Huang, Anna Stavitskaya, Hualin Jiang*. Construction of ZIF-67/MIL-88(Fe, Ni) catalysts as a novel platform for efficient overall water splitting. International Journal of Hydrogen Energy, 48 (2023) 7170-7180. SCI 2区)https://doi.org/10.1016/j.ijhydene.2022.11.080

[5] Xiaomin Guo, Pinghua Chen*, Hualin Jiang, Xiaoqiu Tang, Yiping Huang, Guanghui Wu, and Jian Zhang. Sensitive, Selective and Simultaneous Monitor of Multiple Heavy Metals in Environment Using a Low-Cost MIL-53(Fe)/Ag2CrO4 Modifified GCE Sensor. Journal of The Electrochemical Society, 2022, 169: 097508. SCI 3区)

[6] H. Jiang, Q. Wang, P. Chen*, H. Zheng, J. Shi, H. Shu, Y. Liu*. Photocatalytic degradation of tetracycline by using a regenerable (Bi) BiOBr/rGO composite. J. Clean. Prod., 2022, 339: 130771. SCI 1区,高被引论文)

[7] P. Chen, H. Zheng, H. Jiang*, J. Liu, X. Tu, W. Zhang, B. Phillipsc, L. Fang,*, J. Zou*, Oxygen-Vacancy-Rich Phenanthroline/TiO2 nanocomposites: an integrated adsorption, detection and photocatalytic material for complex pollutants remediation. Chinese Chem. Lett., 2022, 33(2): 907-911. SCI 1区)

[8] Y. Ren, D. Guo, Z. Zhao, P. Chen, F. Li, J. Yao, H. Jiang*, Y. Liu*. Singlet oxygen mediated photocatalytic Antimonite decontamination in water using nanoconfined TiO2. Chem. Eng. J., 2022, 435: 134832. SCI 1区)

[9] H. Jiang, J. Chen, Y. Shi, P. Chen* , X. Tang, W. Jiang, Z. Zou, G. Wu. A wearable All-Solid-State supercapacitor with extremely high stability based on 2D Co-HCF/GO. Appl. Surf. Sci., 2022, 586: 152739. SCI 1区)

[10] P. Chen, S. Li, X. Tang, H. Zheng, J. Shi, L. Wen, Y. Xu*, V. Fominski*, H. Jiang*. Photo-inactive ZIF-8 is applied to significantly enhance the photocatalytic water reduction by forming a built-in electric field with g-C3N4 and the mechanism analysis. J. Environ. Chem. Eng., 2022, 10: 107998. SCI 2区)

[11] W. Jiang, P. Chen*, X. Li, G. Wu, H. Zheng, C. Li, L. Fang*, H. Jiang*, π-conjugation extension and defects introduction into g-C3N4 by phenanthroline molecular doping to form a metal-free electrochemcial sensor towards effective 4-NP detection. Diam. Relat. Mater., 2021, 119: 108557.  SCI 2区)

[12] G. Li, P. Chen*, W. Jiang, M. Wang, and H. Jiang*. Amorphous Yolk-shelled ZIF-67@Co3(PO4)2 as nonprecious bifunctional catalysts for boosting overall water splitting. Inorg. Chem., 2021, 60 (19): 14880-14891. SCI 2区)

[13] J. Chen, H. Shu, P. Niu, P. Chen*, H. Jiang*. Highly sensitive detection of trace tetracycline in water using a metal-organic framework-enabled sensor. Adsorpt. Sci. Technol., 2021, 2021: 1-11.  SCI 3区)

[14] X. Tang, G. Wu, T. Wang, P. Chen*, J. Chen, H. Jiang*. Simultaneously remove and visually detect Ce4+ based on nanocomposite of UiO-66-NH2/CPA-MA. Adsorpt. Sci. Technol., 2021, 2021: 1-6. SCI 3区)

[15] Y. Shi, P. Chen, J. Chen, D. Chen, H. Shu, H. Jiang*, X. Luo*, Hollow Prussian blue analogue/g-C3N4 nanobox for all-solid-state asymmetric supercapacitor. Chem. Eng. J., 2021, 404: 126284.  SCI 1区)

[16] X. Li, Y. Shi, P. Chen*, Y. Bai, G. Li, H. Shu, D. Chen, S. Li* and H. Jiang*. Multifunctional electrochemical application of a novel 3D AgInS2/rGO nanohybrid for electrochemical detection and HER. J. Chem. Technol. Biot., 2019, 94(11): 3713-3724.  SCI 3区)

[17] Q. Wang, P. Chen*, X. Zeng, H. Jiang*, F. Meng, X. Li, T. Wang, G. Zeng, L. Liu, H. Shu, X. Luo*. Synthesis of (ZrO2-Al2O3)/GO nanocomposite by sonochemical method and the mechanism analysis of its high defluoridation. J. Hazard. Mater., 2020, 381:120954.SCI 1区)

[18] H. Jiang, L. Tian, P. Chen*, Y. Bai, X. Li, H. Shu, X. Luo*, Efficient antimony removal by self-assembled core-shell nanocomposite of Co3O4@rGO and the analysis of its adsorption mechanism. Environ. Res., 2020, 187: 109657.SCI 2区)

[19] P. Niu, G. Wu, P. Chen*, H. Zheng, Q. Cao, H. Jiang*, Optimization of boron doped TiO2 as an efficient visible light-driven photocatalyst for organic dye degradation with high reusability. Front. Chem., 2020, 8:172.SCI 3区)

[20] H. Jiang, X. Li, M. Li, P. Liu, T. Wang, D. Chen, P. Chen*, J. Zou*. A new strategy for triggering photocatalytic activity of cytrochrome P450 by coupling of semiconductors. Chem. Eng. J., 2019, 358: 58-66.SCI 1区)

[21] H. Jiang, X. Li, L. Tian, T. Wang, Q. Wang, P. Niu, P. Chen*, X. Luo*. Defluoridation investigation of Yttrium by laminated Y-Zr-Al tri-metal nanocomposite and analysis of the fluoride sorption mechanism. Sci. Total Environ., 2019, 648: 1342-1353.SCI 1区)

[22] P. Chen, Y. Shi, P. Niu, T. Wang, X. Li, H. Jiang*, W. Zhou*, H. Shu, J. Chen, E. Tian. Highly sensitive detection of 4-NP in real water with long stability and high anti-inteference ability based on GO-Ag2CrO4/GCE. J. Taiwan Inst. Chem. Eng., 2019, 97: 128-136.SCI 2区)

[23] T. Wang, P. Chen*, M. Li, X. Luo, L. Liu, G. Zeng, J. Jiang, K. Huang, X. Xu, S. Li, and H. Jiang*. Synthesis of La2(C2O4)3 nanoprisms decorated with Fe3O4@m(ZrO2‐CeO2) nanospheres and their application of effective fluoride removal. J. Chem. Technol. Biot., 2019, 94(11): 3650-3660. SCI 3区)

[24] H. Jiang, J. Liu, M. Li, L. Tian, G. Ding, P. Chen*, X. Luo*, Facile synthesis of a C decorated Fe, N co-doped TiO2 with enhanced visible light photocatalytic activity by a novel co-precursor method. Chinese J. Catal., 201839747-759.SCI 1区)

[25] P. Chen, T. Wang, Y. Xiao, E. Tian, W. Wang, Y. Zhao, L. Tian, H. Jiang*, X. Luo*, Efficient fluoride removal from aqueous solution by synthetic Fe-Mg-La tri-metal nanocomposite and the analysis of its adsorption mechanism. J. Alloy. Compd., 2018, 738: 118-129.SCI 2区)

[26] H. Jiang*, M. Li, J. Liu, X. Li, L. Tian, P. Chen*, Alkali-free synthesis of a novel heterostructured CeO2-TiO2 nanocomposite with high performance to reduce Cr(VI) under visible light. Ceram. Int., 2018, 44: 2709-2717.SCI 1区)

[27] P. Chen, Y. Shi, X. Li, T. Wang, M. Zhou, E. Tian, W. Wang, H. Jiang*, H. Shu. Highly effictive detection of 4-nitrophenol by tremella-like indium silver sulfide modified GCE. Int. J. Electrochem. Sci., 2018, 13: 6158-6168. SCI 4区)

[28] Abdolreza Rezaeifard*, Masoumeh Rezaei, Narges Keikha, Maasoumeh Jafarpour*, Pinghua Chen, Hualin Jiang. Enhanced visible-light-induced photocatalytic activity in M(III)Salophen-decorated TiO2 nanoparticles for heterogeneous degradation of organic dyes. ACS Omega, 2023, 8(4): 3821-3834.SCI 3区)Publication Date (Web):January 17, 2023. DOI: 10.1021/acsomega.2c05971

[29] L. Tian, H. Jiang*, P. Chen, Q. Wang, P. Niu, Y. Shi, M. Zhou, Y. Qing, X. Luo*. A novel GO/PNIPAm hybrid with two functional domains can simultaneously effectively adsorb and recover valuable organic and inorganic resources. Chem. Eng. J., 2018, 343: 607-618. SCI 1区)

[30] Hualin Jiang, Weibo Zhang, Pinghua Chen, Weiwei Zhang, Guoyao Wang,  Xubiao Luo* and  Shenglian Luo*. Equipping an adsorbent with an indicator: a novel composite to simultaneously detect and remove heavy metals from water[J]. J. Mater. Chem. A, 2016, 4(30): 11897-11907.  SCI 1区)

[31] Hualin Jiang, Weibo Zhang, Pinghua Chen, Qinghua He, Menglin Li, Lei Tian, Zhui Tu, Yang Xu. One Pot Method to Synthesize a Novel La–Zr Composite with Exceptionally High Fluoride Removal Performance[J]. J. Inorg. Organomet. Polym. 2016, 26: 285-293.SCI 4区)

[32] Chen Pinghua, Zhou Xuezhen, Chen Weifan, Li Dongping, Li Yongxiu. Tuning the phase composition and particle characteristics of partially stabilized yttria and ceria co-doped zirconia nanocrystals via a sol-gel process with sodium chloride as an additive[J]. Ceramics International. 2015, 41: 1309-1316. SCI 1区)

[33] Pinghua Chen, Xuezhen Zhou, Yongxiu Li*, Dongping Li, Jing Li, Yanzhu Li. Kinetic and thermodynamic study adsorbing methylene blue on nanozirconia[J]. Applied Mechanics and Materials. 475-476, 2014, 1311-1319.EI

[34] Pinghua Chen, Huitao Zheng, Hualin Jiang*, Jun Liu, Xinman Tu, Weibo Zhang, Bailey Phillipsc, Lei Fang,*, Jian-ping Zou*, Oxygen-Vacancy-Rich Phenanthroline/TiO2 nanocomposites: an integrated adsorption, detection and photocatalytic material for complex pollutants remediation[J]. Chinese Chem. Lett., 2021, https://doi.org/10.1016/j.cclet.2021.07.002 SCI 1区)

[35] Yifan Ren, Dongli Guo, Zhiyuan Zhao, Pinghua Chen, Fang Li, Jie Yao, Hualin Jiang*, Yanbiao Liu*. Singlet oxygen mediated photocatalytic Antimonite decontamination in water using nanoconfined TiO2[J]. Chemical Engineering Journal. 2022, 435: 134832. SCI 1区)

[36] Pinghua Chen, Xuezhen Zhou*, Dongping Li, Jing Li, Yanzhu Liu, Yongxiu Li*. Adsorption of methylene blue on nano composite MWCNTs/ZrO2: Equilibrium, dynamic and surface data[J]. Asian Journal of Chemistry. 2014, 26 (20): 6950-6956.

[37] Hualin Jiang, Pinghua Chen, Weibo Zhang, Shenglian Luo*, Chaktong (Peter) Au, Menglin Li. Deposition of nano Fe3O4@mZrO2 onto exfoliated graphite oxide sheets and its application for removal of amaranth[J]. Appl. Surf. Sci, 2014, 317:  1080-1089. DOI: 10.1016/j.apsusc.SCI 1区)

[38] Hua lin Jiang*, Ping hua Chen, Sheng Lian Luo*, Xu biao Luo, Xin man Tu, Qun Cao, Yan lei Zhou, Wei bo Zhang, Synthesis of nanocomposite Fe3O4 / ZrO2 / Chitosan and its application for dye removal[J]. Journal of Inorganic and Organometallic Polymers and Material. 23, 2013, 393-400.SCI 4区)

[39] Hualin Jiang, Pinghua Chen, Shenglian Luo*, Xinman Tu, Qun Cao, Meng Shu. Synthesis of novel nanocomposite Fe3O4/ZrO2/chitosan and its application for removal of nitrate and phosphate[J]. Applied Surface Science. 2013, 284: 942-949. SCI 1区)

[40] Dong-Ping Li*, Qi Liu, Feng Liu, Jing Li, Ping-Hua Chen, Xiao-Yan Jiao, Yong-Xiu Li*, A novel fluorinated metal-organic framework with rhombic channels[J]. Inorg. Chem. Commun. 2012, 24: 50-54. SCI 4区)

[41] Li Dong-Ping*, Li Jing, Li Xu, Chen Ping-Hua, Jiao Xiao-Yan, Li Yong-Xiv.  Solvothermal synthesis and crystal structure of a Zn(II) microporous metal-organic framework[J]. Chinese Journal of Structural Chemistry. 2012, 31(11): 1676-1680. SCI 4区)

[42] Li Dong-Ping*, Li Can-Hui, Li Jing, Chen Ping-Hua, Jiao Xiao-Yan, Li Yong-Xiv. Solvothermal synthesis and crystal structure of a two-dimensional Cd(Ⅱ) complex based on a flexible carboxylate ligand[J]. Chinese Journal of Structural Chemistry. 2012, 31(12): 1837-1841.SCI 4区)

代表性授权专利:

[1] 陈萍华 石杨明 蒋华麟 戴玉华 邓春健 陈皆曾 唐小秋,一种中空Rb-Ni-Fe立方体/g-碳三氮四超级电容器材料的制备方法,ZL201910851371.3,申请时间:2019-9-10;授权时间:2021.06.15

[2] 陈萍华 蒋华麟 田磊 肖业雯 王琦,一种Fe-Mg-La三元复合氟离子吸附剂及其制备方法,ZL201710880204.2,申请时间:2017.09.26;授权时间:2019.10.15

[3] 陈萍华 蒋华麟 田磊 王琦 牛平平,一种3D花瓣状Sb(III)Sb(V)吸附材料的制备方法,ZL201711033104.2,申请时间:2017.10.30;授权时间:2019.08.06

[4] 陈萍华 蒋华麟 王琦 李雪芹 肖业雯, 一种Y-Zr-Al三元金属复合纳米氟离子吸附的制备方法,ZL201710080206.1,申请时间:2017.09.26;授权时间:2019.07.19

[5] 陈萍华 蒋华麟 刘军 厉梦琳 田磊 张为波,一种利用邻菲啰啉合铁同时向TiO2掺杂铁、氮的方法,ZL201510972546.8,申请时间:2015.12.23;授权时间:2019.04.05

[6] 陈萍华 蒋华麟 田磊 刘军 周敬松,一种通过声化学法合成氟离子吸附剂ZrO2-Al2O3/GO的方法,ZL201610632383.3,申请时间:2016.08.05;授权时间:2018.09.11

[7] 陈萍华 王涛 蒋华麟 李雪芹 王琦,一种电极修饰材料二硫铟化银/还原氧化石墨烯的制备方法及其检测环丙沙星的应用,ZL201811059712.5. 公开时间:2019-01-11;授权时间:2020.05.12

[8] 陈萍华 蒋华麟 张为波 罗胜联 厉梦琳,一种高吸附量高去除率的氟离子吸附剂及其制备方法,ZL201410436424.2,申请时间:2014.9.1;授权时间:2016.8.17

[9] 陈萍华 蒋华麟 罗胜联 秦元成,一种改造GO以提高其吸附酸性染料的性能,ZL201410045613.7,申请时间:2014.2.8;授权时间:2015.8.19

[10] 陈萍华 邹子龙 蒋华麟 戴玉华 李桂芳,一种基于ZIF-67UiO-66MOF的电催化全分解水材料的制备方法,ZL202010672120.1,申请时间:2020.07.14; 授权时间:2022.02.01

[11] 蒋华麟 牛平平 陈萍华 邓春健 龙石爱 顾明 李江,一种基于二硫铟化银电催化全解水材料的制备方法,ZL201910806916.9,申请时间:2019.08.29; 授权时间:2022.02.01

[12] 蒋华麟 蒋微 陈萍华 邓春健 龙石爱 陈皆曾 孟非凡 成超,一种可同时检测铅离子和铜离子的电传感器材料的制备方法,ZL201910812725.3,申请日期:2019.08.29,授权时间:2021.07.27

[13] 蒋华麟 王琦 陈萍华 牛平平 李雪芹 王涛 石杨明 戴玉华,一种免处理可多次重复使用的四环素降解光催化剂的制备方法及其应用,ZL201810819760.3. 申请日期:2018.07.24;授权时间:2021.05.18

[14] 蒋华麟 李桂芳 陈萍华 王琦 牛平平 王涛,一种基于二氧化锰/氧化石墨烯纳米复合材料的环丙沙星吸附净化剂的制备方法,ZL201811059717.8. 申请日期:2018.09.12;授权时间:2021.05.18

[15] 蒋华麟 陈萍华 厉梦琳 刘军,一种三明治构型的g-碳三氮四/二氧化钛复合光催化剂的制备方法,ZL201710592693.1,申请时间:2017.07.19;授权时间:2019.07.12

[16] 蒋华麟 田磊 陈萍华 刘军 何文,一种可分级回收Pb2+4-NP的吸附剂的制备方法,ZL201710081961.3,申请时间:2017.02.15;授权时间:2019.06.14

[17] 蒋华麟 陈萍华 厉梦琳 刘军 田磊 张为波,一种利用TiO2CeO2负载CYP119酶光催化还原Cr6+的方法,ZL201510972547.2,申请时间:2015.12.23;授权时间:2017.12.5

[18] 蒋华麟 陈萍华 张为波 厉梦琳 刘军 田磊,一种通过一步反应稳定及增强TiO2活性的方法,ZL201510983219.2,申请时间:2015.12.24;授权时间:2017.12.1

[19] 蒋华麟 陈萍华 刘军 厉梦琳 田磊 张为波,一种利用TiO2邻菲啰啉负载CYP119酶光催化氧化降解甲基橙的方法,ZL201510972548.7,申请时间:2015.12.23;授权时间:2017.11.21

[20] 蒋华麟 陈萍华 厉梦琳 张为波 田磊 白培培,一种一锅法合成磁性3D石墨烯复合吸附材料的方法,ZL201510416632.0,申请时间:2015.7.16;授权时间:2017.10.13

[21] 蒋华麟 陈萍华 厉梦琳 张为波 舒梦 田磊,一种三氯卡班吸附净化剂的制备方法,ZL201510213125.7,申请时间:2015.4.30;授权时间:2017.3.15

[22] 蒋华麟 陈萍华 厉梦琳 张为波 田磊 白培培,一种基于3D石墨烯/BiOI的分子印迹光催化复合材料的制备方法,ZL201510416375.0,申请时间:2015.7.16;授权时间:2017.6.27

[23] 蒋华麟 陈萍华 厉梦琳 张为波 田磊 黄志根,一种自清洁智能吸附材料的制备方法,ZL201510528117.1,申请时间:2015.8.26;授权时间:2017.7.14

[24] 蒋华麟 李雪芹 陈萍华 牛平平 李桂芳 陈皆曾 戴玉华,一种修饰电极材料邻菲啰啉共聚改性g-碳三氮四的制备方法,ZL201811009072.7,申请时间:2018.08.31;授权时间:2020.01.03

[25] 蒋华麟 牛平平 陈萍华 李雪芹 王琦 郑会涛,一种以MIL-53Fe)修饰电极检测水体中四环素的方法,ZL201811059850.3. 公开时间:2019.01.10;授权时间:2020.12.29

[26] 蒋华麟 张为波 陈萍华 罗胜联 罗旭彪,一种快速纯化CYP119酶的方法, ZL201310264044.0,申请时间:2013.6.28;授权时间:2016.1.27

[27] 蒋华麟 陈萍华 厉梦琳 罗胜联 张为波,一种磁性氟离子吸附剂及其制备方法,ZL201410436425.7,申请时间:2014.9.1;授权时间:2016.8.17

[28] 蒋华麟 陈萍华 张为波 张巍巍 王国耀 厉梦琳,一种可同时检测和吸附去除水体中亚铁离子和铜离子材料的制备方法,ZL201510045291.0,申请时间:2015.1.29;授权时间:2016.9.21

[29] 蒋华麟 陈萍华 厉梦林 罗胜联 张为波,一种调控纳米TiO2-CeO2的形貌呈球型、哑铃型、片型的方法,ZL201410363009.9,申请时间:2014.7.29;授权时间:2016.8.24

[30] 蒋华麟 罗胜联 陈萍华 罗旭彪 陈素华 秦元成,一种高效去除磷酸根、硝酸根的磁性纳米材料的制备方法,ZL201210105595.8,申请时间:2012.4.12;授权时间:2013.7.10

[31] 蒋华麟 陈萍华 罗胜联 涂新满 罗旭彪 曹群 袁志林 周艳蕾,一种提高壳聚糖抗酸性能的方法,ZL201210330556.8,申请时间:2012.9.10;授权时间:2014.9.17

[32] 李永绣 陈萍华 周雪珍 唐群 陈伟凡 李静 刘艳珠. 乙二醇溶胶-凝胶法合成类球形纳米钇铈掺杂氧化锆的方法,ZL201210531935.3,申请时间:2012.12.12;授权时间:2014.8.6

[33] 李永绣 陈萍华 周雪珍 陈伟凡 唐群 李东平 李静 刘艳珠 周新木. 类球形亚微米四方相钇铈稳定氧化锆陶瓷粉末的合成方法,ZL201210537680.1,申请时间:2012.12.13;授权时间:2014.7.16

责任编辑:华莉 责任编辑:陈少波