李永乐 数学讲师
广受学生信赖的“线代王”

预约

郑州轻工业大学材料与化学工程学院研究生导师方少明简介 郑轻方少明老师个人资料

2023-08-08 10:19:49 来源:天任考研  

郑州轻工业大学材料与化学工程学院研究生导师方少明简介  郑轻方少明老师个人资料

考研是人生中的一次重要考试,导师的选择对于考研的成功至关重要。导师不仅仅是一个指导老师,更是一个学术伙伴,他们可以帮助你制定合理的学习计划,提供专业的指导和帮助。天任考研小编已经整理好【郑州轻工业大学材料与化学工程学院研究生导师方少明简介 郑轻方少明老师个人资料】的内容,一起来看看吧!

郑州轻工业大学硕士生导师基本情况一览表
姓名
方少明


职称
教授

学科/专业学位类别
化学工程与技术/材料与化工

研究方向
功能材料、材料物理与化学

1.导师基本情况
方少明,1963年8月生,中共党员,博士,教授,博士生导师。2005年获河北工业大学博士学位。主要从事功能材料、材料物理与化学等领域的研究。现为郑州轻工业大学副校长、国家级特色专业“高分子材料与工程”负责人、河南省表界面科学重点实验室主任、教育部“多尺度复合材料”重点实验室培育基地负责人、教育部“****和创新团队发展计划”创新团队带头人、河南省一级重点学科“化学工程与技术”学科带头人。先后主持承担教育部“****和创新团队发展计划”创新团队1项,国家自然科学基金5项,主持完成河南省重大科技攻关等省部级以上科研项目10多项。获河南省科技进步一等奖2项、二等奖4项;获河南省高等教育教学成果一等奖1项。在Coord. Chem. Rev., J. Mater.Chem. B, Inorg. Chem.等学术期刊上发表SCI收录论文100多篇,影响因子3.0以上的40多篇,主编学术著作3部,授权发明专利30多项。获得国务院政府特殊津贴专家、全国科技工作者、河南省专家、河南省教学教师等荣誉称号。
2.代表性成果
科研成果及奖励(项目、专利、奖励等):
项目
(1)教育部“****与创新团队发展计划”创新团队,IRT118,多尺度复合功能材料,2012.01-2015.12,300万元,已结题,主持
(2)国家自然科学基金面上项目,**,基于异金属配位中心的功能配合物的设计合成及其聚氨酯复合材料的构筑,2013.01-2016.12,88万元,已结题,主持
(3)国家自然科学基金面上项目,**,基于等离子体聚合-稀土配位技术的稀土碳纳米管的设计构筑及其聚合物材料构效研究,2011.01-2013.12,43万元,已结题,主持
(4)国家自然科学基金面上项目,**,大单体型稀土配合物的设计合成及其聚合物构效研究,2008.01-2010.12,30万元,已结题,主持
(5)教育部科学技术研究重点项目,208085,二氧化钛纳米膜的制备、表征及性能评价,2007.01-2010.12,10万元,已结题,第二主持人
(6)河南省科技创新杰出人才计划,5,大单体基质金属配合物复合体系的构筑及应用基础研究,2010.01-2012.12,50万元,已结题,主持
(7)河南省“创新型科技团队”,豫科人组[2009]2号,多尺度聚合物基复合材料研究团队,2009.01-2011.12,50万元,已结题,主持
(8)郑州市科技领军人才计划,10LJRC191,网状结构的金属配合物—大单体聚合物复合材料的构筑及构效研究,2010.01-2012.12,50万元,已结题,主持
(9)河南省科技开放合作项目,**0,含介晶基元稀土-聚氨酯功能材料的设计构筑及光、电、液晶性能研究,2014.01-2015.12,30万元,已结题,主持
(10)河南省环境保护厅,河南省造纸行业排污单位主要污染物排放总量确认技术方法研究,2014.01-2014.12,82万元,已结题,主持
(11)河南省科技厅基础与前沿技术研究项目,**2,稀土/聚氨酯发光材料的合成及其构效关系研究,2013.01-2015.12,已结题,主持
(12)河南省火炬计划,,水性氟碳金属涂料,2006.01-2008.12年,10万元,已结题,主持
(13)河南省重大科技攻关,,神马实业公司纺丝工序清洁生产工艺研究,2004.01-2007.12,50万元,已结题,主持
专利
(1)方少明(2/6),7 ,8-二甲氧基-2 ,3 ,4 ,5-四氢-1H-苯并[c]氮杂卓盐酸盐及其制备方法,2019.11.15,中国,ZL3.3
(2)方少明(7/7),具有非线性光学特性的偶氮化合物及其合成方法,2019.10.08,中国,ZL3.5
(3)方少明(3/11),一种金属-有机骨架配位聚合物复合材料及其制法与应用,2019.05.28,中国,发明专利:ZL9.0
(4)方少明(1/5),磺化聚芳醚砜及其制法和其在制备电制动器中的应用,2019.05.21,中国,发明专利:ZL4.5
(5)方少明(5/6),一种基于SiO2的pH响应性复合微凝胶及其制备方法,2019.05.03,中国,ZL3 .0
(6)方少明(2/5),一种应用于聚氨酯材料的反应型阻燃剂及其制备方法,2018.07.24,中国,ZL1 .7
(7)方少明(1/5),硅橡胶/蛭石复合材料的制法及其制得的硅橡胶/蛭石复合材料,2018.6.5,中国,发明专利:ZL6.2
(8)方少明(2/5),一种应用于聚氨酯材料的反应型阻燃剂及其制备方法,2018.7.24,中国,发明专利:ZL1.7
(9)方少明(2/8),一种新型化合物6,7-二溴-1,2,3,4-四氢异喹啉及其制备方法,2018.9.28,中国,发明专利:ZL3.6
(10)方少明(2/8),一种N-苄基甘氨酸酯有机小分子凝胶的制备方法及其应用,2018.9.28,中国,发明专利:ZL4.2
(11)方少明(3/5),模板原位聚合制备热固性聚氨酯丙烯酸酯纳米阵列的方法,2017.1.25,中国,ZL3.6
(12)方少明(2/6),一类侧链末端可官能化的己基噻吩类化合物及其制备方法,2017.10.10,中国,ZL4.6
(13)方少明(6/7),一种具有拉曼增强活性的磁性贵金属催化剂及其制备方法,2017.11.7,中国,ZL4.5
(14)方少明(2/6),大尺寸石墨烯-金属精细颗粒复合膜及其制法与用途,2017.8.22,中国,ZL6.0
(15)方少明(5/5),一种隐钾锰矿分子筛宏观三维泡沫体材料及其制备方法,2017.8.29,中国,ZL9 .9
(16)方少明(6/7),一种五氧化二铌海胆状纳米微球的制备方法及其作为光催化剂的应用,2017.5.10,中国,ZL1.0
(17)方少明(7/7),一种掺杂碳、氮的五氧化二铌纳米片的制备方法及其作为光催化剂的应用,2017.8.8,中国,ZL3.3
(18)方少明(5/9),一种石墨烯/壳聚糖/氧化亚铜复合材料及其制备方法和应用,2017.6.16,中国,ZL4.8
(19)方少明,氧化硅填充的金属多孔材料及其制法与用途,2017.2.8,中国,ZL3.3
(20)方少明(6/7),一种对氢氧化锂、氢氧化钠、氢氧化钾可视化选择性识别的有机小分子,2017.12.1,中国,ZL5.7
(21)方少明(3/6),一种共价有机骨架/石墨烯复合材料及制法和用途,2017.11.10,中国,ZL3.8
(22)方少明(2/7),一种手性单核九配位钕β-二酮配合物及其制备方法,2016.8.24,中国,ZL0.5
(23)方少明(2/7),(R,R)–1,2-二苯基乙二胺叠氮镍配合物及其制备方法,2016.8.31,中国,ZL0.X
(24)方少明(2/7),一种化学反应性小分子及其凝胶制备方法,2015.12.30,中国,ZL6.6
(25)方少明(3/7),1,2-萘二酸镉配合物及其制备方法,2014.6.18,中国,ZL4.1
(26)方少明(2/3),木质素接枝功能性乙烯基大单体高效减水剂及其制备方法,2014.4.16,中国,ZL7.4
(27)方少明,氧杂蒽-9-羧酸镉配合物及其制备方法,2013.9.25,中国,ZL36
(28)方少明(1/10),一种1,5-二(1-H-苯并咪唑基)戊烷的镉配合物及其制备方法与应用,2013.7.3,中国,ZL1.0
(29)方少明(1/6),(+/-)-反式-环氧琥珀酸银配合物及其制备方法,2012.02.01,中国,ZL 0.6
(30)方少明(1/9),1-(4-羧苯基)-5-巯基-1H-四唑和4,4’-联吡啶混配钴配合物及其制备方法,2011.12.7,中国,ZL7.4
(31)方少明(1/9),2,3,4,5-四氢呋喃四羧酸和3-(2-吡啶基)吡唑混配镉配合物及其制备方法与应用,2011.12.7,中国,ZL6.X
(32)方少明(2/9),对羟基苯丙烯酸和邻菲啰啉混配钐配合物及其制备方法与应用, 2011.12.7,中国,ZL8.9
(33)方少明(2/6),4-氨基-3,5-双(2-吡啶基)-1,2,4-三唑-银(Ⅰ)配合物及其制备方法, 2011.12.7,中国,Zl5.3
(34)方少明(3/6),含有5-溴代烟酸的镉(Ⅱ)配合物及其制备方法,2011.12.7,中国,ZL 9.2
(35)方少明(1/4),对重金属离子响应的金纳米溶胶及其制备方法,2010. 09.7,中国,ZL 2.4
(36)方少明(2/4),锦纶纺丝油烟废气试样采集测定方法及试样采集装置, 2008.11.19,中国,ZL2.9
(37)方少明(2/4),纺丝油剂废水破乳剂及其制备方法,2007.08.3,中国,ZL 0.4
奖励
(1)方少明(1/10),多尺度功能复合材料的构筑及构效调控,河南省科技厅,河南省科技进步奖,二等奖,2016
(2)方少明(6/14),裂解乙烯碳四碳五资源高效利用制备酸酐类电子材料新技术,河南省科技厅,河南省科技进步奖,一等奖,2010
(3)方少明(7/15),麦草清洁制浆技术,河南省科技厅,河南省科技进步奖,一等奖,2008
(4)方少明(1/9),大单体技术制备耐高温高强度透明高分子材料,河南省科技厅,河南省科技进步奖,二等奖,2006
(5)方少明(1/10),纳米二氧化钛/ABS抗紫外线母料的研制,河南省科技厅,河南省科技进步奖,二等奖,2003
(6)方少明(2/7),密封铅酸蓄电池正极活性物质研究及其应用,河南省科技厅,河南省科技进步奖,二等奖,2002
(7)方少明,锡酸钙多孔微立方的制备及在锂离子电池中的应用研究,中国轻工业联合会科学技术进步奖,三等奖,2011
(8)方少明,万吨/年系列酸酐合成新工艺开发,中国石油和化学工业联合会科学技术二等奖,2011
(9)方少明,热喷涂尼龙1010/纳米系列复合涂层结构与性能研究,中国轻工业联合会科学技术进步奖,2009
(10)方少明,纺丝工序油烟废气净化工艺的研究,河南省教育厅科技成果一等奖,2009
鉴定
(1)方少明等.新颖结构的稀土有机配合物型转光剂的研制,豫科鉴委字[2011]第986号,(国内领先)
(2)方少明等.电致发热可控温材料的研制,豫科鉴委字[2011]第990号,(国内领先)
(3)方少明等.纺丝工序油烟废气净化工艺的研究,豫科鉴委字[2008]第51号,(国际先进)
(4)方少明等.纺丝工序油剂废水处理工艺的研究,豫科鉴委字[2008]第17号,(国内领先)
(5)方少明等.热喷涂尼龙1010/纳米系列复合涂层结构与性能研究,豫科鉴委字[2008]第556号,(国内领先)
(6)方少明等.反应接枝型通讯光缆硅芯母料的研究与应用,豫科鉴字[2005]第328号,(国内领先)
发表论著(著作、发表文章等):
发表文章
(1)Shaoming Fang*, Cong Li, Lijun Gao, Quanwen Sun, Jing Cui, Liming Zhou*, Caixia Yang, Haifeng Yu*. Nanotemplate Fabrication of PEG-Containing Thermosetting Polyurethane Nanoarray toward Enhanced Thermal Storage[J]. ACS Applied Polymer Materials, 2019, 1: 2924-2932.
(2)Yong-Hui Zhang*, Yu-Liang Li, Fei-Long Gong, Ke-FeiXie, Hao-Li Zhang *, Shao-Ming Fang*. Double-platelet Pd@ZnO microcrystals for NO2chemical sensors: their facile synthesis and DFT investigation[J]. Physical Chemistry Chemical Physics, 2019,21(39): 22039-22047.
(3)Guang LuHan*,ZheChen, Li FangCai,Yong HuiZhang,Jun FengTian,HuanHuanMa,Shao MingFang*. Post-synthetic MIL-53(Al)-SO3H incorporated sulfonated polyarylethersulfone with cardo (SPES-C) membranes for separating methanol and methyl tert-butyl ether mixture[J]. Separation and Purification Technology, 2019, 220: 268-275.
(4)Jianbo Zhao*, Liming Ge, Haifeng Yuan, Yingfan Liu, YanghaiGui, Baoding Zhang, Liming Zhou*, Shaoming Fang*. Heterogeneous gold catalysts for selective hydrogenation: from nanoparticles to atomically precise nanoclusters[J].NANOSCALE, 2019, 11 (24):11429-11436.
(5)MinghuaWang, MengyaoHu, BinHu, ChuanpanGuo, YingpanSong, QiaojuanJia, LinghaoHe, ZhihongZhang*, ShaomingFang*. Bimetallic cerium and ferric oxides nanoparticles embedded within mesoporous carbon matrix: Electrochemical immunosensor for sensitive detection of carbohydrate antigen 19-9[J]. Biosensors & Bioelectronics,2019, 135: 22-29.
(6)Xiaojing Zhang*, Zhao Chen, Yue Zhou, Yongpeng Ma, Hongzhong Zhang, Liming Zhou, Shaoming Fang*. Comparisons of Nitrogen Removal and Microbial Communities in Anammox Systems upon Addition of Copper-Based Nanoparticles and Copper Ion[J]. Industrial & Engineering Chemistry Research, 2019, 58(19): 7808-7816.
(7)Minghua Wang, Yongkang Liu, Longyu Yang, KuanTian, Linghao He, Zhihong Zhang*, QiaojuanJia, Yingpan Song, ShaomingFang*.Bimetallic metal-organic framework derived FeOx/TiO2embedded in mesoporous carbon nanocomposite for the sensitive electrochemical detection of 4-nitrophenol[J]. Sensors and Actuators B: Chemical, 2019, 281: 1063-1072.
(8)FangfangSu, QiaojuanJia, ZhenzhenLi, MinghuaWang, LinghaoHe, DonglaiPeng, YingpanSong, ZhihongZhang*, ShaomingFang*. Aptamer-templated silver nanoclusters embedded in zirconium metal-organic framework for targeted antitumor drug delivery[J]. Microporous and Mesoporous Materials, 2019, 275:152-162.
(9)Lijun Gao, Cong Li, Chongzhou Wang, Jing Cui, Liming Zhou*, Shaoming Fang*. Structure and luminescent property of polyurethane bonded with Eu3+-complex[J]. Journal of Luminescence, 2019, 212:328-333.
(10)Minghua Wang, Longyu Yang, Chuanpan Guo, Xufei Liu,Linghao He, Yingpan Song, Qingxin Zhang, Xiongwei Qu,* Hongzhong Zhang, Zhihong Zhang,*Shaoming Fang*. Bimetallic Fe/Ti-Based Metal–Organic Framework for Persulfate-Assisted Visible Light Photocatalytic Degradation of Orange II[J].ChemistrySELECT, 2018, 3:3664-3674.
(11)Minghua Wang, Longyu Yang, Jinyun Yuan, Linghao He, Yingpan Song, Hongzhong Zhang, Zhihong Zhang*,Shaoming Fang*. Heterostructured Bi2S3@NH2-MIL-125(Ti) nanocomposite as a bifunctional photocatalyst for Cr(VI) reduction and rhodamine B degradation under visible light[J]. RSC Adv., 2018, 8:12459-12470.
(12)Yuanhua Xiao,Dangcheng Su, Xuezhao Wang, Shide Wu, Liming Zhou,Shaoming Fang*,Feng Li*.Layered double hydroxides with larger interlayer distance for enhanced pseudocapacitance[J].SCIENCE CHINA Materials, 2018, 61(2): 263-272.
(13)LinghaoHe, Fenghe Duan, Yingpan Song, Chuanpan Guo, Hui Zhao, Jia-Yue Tian, Zhihong Zhang, Chun-Sen Liu, Xiaojing Zhang, PeiyuanWang, Miao Du,Shao-Ming Fang.2D zirconium-based metal-organic framework nanosheets for highly sensitive detection of mucin 1: consistency betweenelectrochemical and surface plasmon resonance methods[J].2D Mater., 2017,4:2053-583.
(14)Xi-Li Li*,Ming Hu, Zhigang Yin, Cancan Zhu, Cai-Ming Liu*,Hong-Ping Xiao,Shaoming Fang*. Enhanced single-ion magnetic and ferroelectric properties of mononuclear Dy(III) enantiomeric pairs through the coordination role of chiral ligands[J]. Chem. Commun., 2017, 53:3998-4001.
(15)Chun-Sen Liu,Min Chen,Jia-Yue Tian, Lei Wang, Min Li,Shao-Ming Fang*,Xi Wang, Li-Ming Zhou, Zhuo-Wei Wang, Miao Du*. Metal–Organic Framework Supported on Processable Polymer Matrix by In Situ Copolymerization for Enhanced Iron(III) Detection[J].Chem. Eur. J., 2017, 23:3885-3890.
(16)Donglai Peng, Bin Hu, Mengmeng Kang, Minghua Wang, Linghao He,Zhihong Zhang?, Shaoming Fang?.Electrochemical sensors based on gold nanoparticles modified with rhodamine B hydrazide to sensitively detect Cu(II)[J].Applied Surface Science,2016, 390:422-429.
(17)Yuanhua Xiao*, Dangcheng Su, Xuezhao Wang, Shide Wu, Liming Zhou,Zhenhua Sun, Zhenxing Wang,Shaoming Fang*, Feng Li*.Ultrahigh energy density and stable supercapacitor with 2D NiCoAl Layered double hydroxide[J].ElectrochimicaActa,2017, 253:324-332.
(18)Yu Xing, Xuehui Guo, Depeng Wu, Zhenxin Liu*,Shaoming Fang*,Steven L. Sui.Construction of Macroscopic 3D Foams of Metastable Manganese Oxides via a Mild Templating Route: Effects of Atmosphere and Calcination[J].Journal of Alloys and Compounds,2017, 719:22-29.
(19)JianboZhao*, YanghaiGui, YingfanLiu, GuoqingWang, HongzhongZhang, Yu’anSun,ShaomingFang*.Highly efficient and magnetically recyclable Pt catalysts for hydrosilylationreactions[J].Catal.Lett., 2017, 147:1127-1132.
(20)Shaoming Fang, Xiaodong Dong, Shunli Liu, Donglai Peng, Linghao He, Minghua Wang, Guodong Fu, Xiaozhong Feng, Zhihong Zhang. A label-free multi-functionalized electrochemical aptasensor based on a Fe3O4@3D-rGO @plasma-polymerized (4-vinyl pyridine) nanocomposite for the sensitive detection of proteins in whole blood[J]. Electrochimica Acta,2016, 212:1-9.
(21)Shaoming Fang, Xiaodong Dong, Hongfei Ji, Shunli Liu, Fufeng Yan, Donglai Peng, Linghao He, Minghua Wang, Zhihong Zhang. Electrochemical aptasensor for lysozyme based on a gold electrode modified with a nanocomposite consisting of reduced graphene oxide, cuprous oxide, and plasma-polymerized propargylamine[J]. Microchimica Acta,2016,183:633-642.
(22)Shunli Liu, Mengmeng Kang, Fufeng Yan, Donglai Peng, Yanqin Yang, Linghao He, Minghua Wang,Shaoming Fang*, Zhihong Zhang*. Electrochemical DNA Biosensor Based on Microspheres of Cuprous Oxide and Nano-chitosan for Hg(II) Detection[J]. Electrochimica Acta, 2015, 160: 64-73.
(23)Mengmeng Kang,Minghua Wang,Shuai Zhang,Xiaodong Dong,Linghao He,Yonghui Zhang,Dongjie Guo,Peiyuan Wang,Shaoming Fang*,Zhihong Zhang*. Highly selective and sensitive reversible sensor for Cu (II) detection based on hollow TiO2spheres modified by fluorescein hydrozine-3, 6-diacetic acid[J]. Electrochimica Acta, 2015, 161:186-194.
(24)Fenghua Chen*, Qingtao Chen, Yi Zhang, Pei Wang, Xianjun Zheng, Zhijun Chen,Shaoming Fang*. Multifunctional composite of rGO/Fe3O4/Ag@AgCl for the repeated use in simultaneous adsorption, in-situ SERS monitoring and photocatalytic degradation of rhodamine B under visible light irradiation[J]. Materials Letters, 2015, 139:451-454.
(25)Shaoming Fang*, Xiaodong Dong, Yuanchang Zhang, Mengmeng Kang, Shunli Liu, Fufeng Yan, Linghao He, Xiaozhong Feng, Peiyuan Wang and Zhihong Zhang*. One-step synthesis of porous cuprous oxide microspheres on reduced graphene oxide for selective detection of mercury ions[J]. New Journal of Chemistry, 2014, 38: 5935-5942.
(26)Minghua Wang,Shunli Liu,Yuanchang Zhang,Yanqin Yang,Yu Shi,Linghao He,Shaoming Fang*, Zhihong Zhang*. Graphene nanostructures with plasma polymerized allylamine biosensor for selective detection of mercury ions[J]. Sensors and Actuators B: Chemical ,2014, 203: 497-503.
(27)Zhihong Zhang*, Shunli Liu, Yu Shi, Yuanchang Zhang, Dave Peacock, Fufeng Yan, Peiyuan Wang, Linghao He, Xiaozhong Feng andShaoming Fang*. Label-free aptamer biosensor for thrombin detection on a nanocomposite of graphene and plasma polymerized allylamine[J]. J. Mater.Chem. B, 2014, 2(11): 1530-1538.
(28)Zhihong Zhang*, Shunli Liu, Mengmeng Kang, Guang Yang, Yanshan Li, Fufeng Yan,Linghao He,Xiaozhong Feng, Peiyuan Wang, Shaoming Fang*. Graphene nanostructures with plasma-polymerized pyrrole as an adsorbent layer for biosensors[J]. Microchim Acta, 2014, 181:1059-1067.
(29)Fenghua Chen, Yongwei Wang, Qingtao Chen, Lifeng Han, Zhijun Chen andShaoming Fang*. Multifunctional nanocomposites of Fe3O4-graphene-Au for repeated use in simultaneous adsorption, in situ SERS detection and catalytic reduction of 4-nitrophenol in water[J]. Materials. Research express, 2014, 12:45-49.
(30)Miao Du*, Cheng-Peng Li , Chun-Sen Liu,Shao-Ming Fang*. Design and construction of coordination polymers with mixed-ligand synthetic strategy[J]. Coordination Chemistry Reviews. 2013, 257:1282-1305.
(31)Feng Li,* Feilong Gong, Yuanhua Xiao, Aiqin Zhang, Jihong Zhao,Shaoming Fang,* DianzengJia. ZnO Twin-Spheres Exposed in ±(001) Facets: Stepwise Self-Assembly Growth and Anisotropic Blue Emission[J].ASC.NANO,2013,7(12):10482-10491.
(32)Shao-Ming Fang, Min Chen, Xiao-Gang Yang, et al. An unusual (4,10)-connected 3-D metal–organic framework based on nonplanar tricarboxyl tecton and tetracadmium(II) secondary building units[J]. CrystEngComm, 2012,14:5299-5304.
(33)Chun-Sen Liu, Xiao-Gang Yang, Min Hu, Miao Du*,Shao-Ming Fang*. A structural paradigm for 3-periodic semiregular (46.69)-hxg net with high-symmetry hexagonal geometry, constructed from the linear [Cd2NaO6(H2O)6] SBUs and a flexible 6,6’-dithiodinicotinate linker[J]. Chem. Commun., 2012, 48:7459-7461.
(34)Shao-Ming Fang, Min Hu, Qiang Zhang, et al. Ag(I) and Zn(II) coordination polymers with a bulky naphthalene-based dicarboxyl tecton and different 4,4¢-bipyridyl-like bridging co-ligands:structural regulation and properties[J]. Dalton Trans., 2011, 40: 4527-4541.
(35)Shao-Ming Fang, Min Hu, Li-Ran Jia, et al. Highly-thermostable lanthanide–organic coordination frameworks with N-protonated 2,6-dihydroxypyridine-4-carboxylate exhibiting unusual 3-D mixed-connected network topology[J]. CrystEngComm, 2011, 13:6555-6563.
(36)Shao-Ming Fang, E. Carolina Sa?udo, Min Hu, et al. Hydrothermal Syntheses, Crystal Structures, and Magnetic Properties of a Series of Unique Three-Dimensional Lanthanide-Organic Coordination Frameworks with a N-Protonated 2,6-Dihydroxypyridine-4-Carboxylate Tecton[J]. Crystal Growth & Design, 2011,11:811-819.
(37)Shao-Ming Fang, Qiang Zhang, Min Hu, et al. From Infinite One-Dimensional Helix to Discrete CuII15 Cluster along with in Situ SN2 Ring-Cleavage of cis-Epoxysuccinic Acid: pH-Controlled Assemblies,Crystal Structures, and Properties[J]. Inorg. Chem., 2010, 49:9617-9626.
(38)Shao-Ming Fang, Qiang Zhang, Min Hu, et al. Regulation and Properties of Diversiform Cd(II) Supramolecular Complexes with a Bulky Naphthalene-Based Dicarboxyl Tecton and Different N-Donor Co-Ligands[J]. Cryst. Growth Des., 2010, 10 (11):4773-4785.
(39)Shao-Ming Fang*, Song-Tao Ma, Liang-Qi Guo, etal. A photoluminescent 3D silver(I) polymer with mixed 2-naphthol-5-carboxylate and hexamethylenetetramine ligands, showing an unusual (3,4)-connected (3,4)-connected (6.7.8)(2)(4.6.7)(2)(4.7.8)(2)(7(2).8)(2)(6(2).7.8(3))(6(2).7(2).8.10) topology[J]. Inorganic Chemistry Communications, 2010,13:139-144.
(40)Shaoming Fang*, Lijun Gao, Liming Zhou, Zexin Zheng, et al. Synthesis and Characterization of Excellent Transparency Poly(urethane-methacrylate)[J]. Journal of Applied Polymer Science,2009,111(2):724-729.
(41)Shao-Ming Fang*,Li-Ming Zhou, Li-Jun Gao, Dong-Liang Liu, et al. Preparation and characterization of nanocomposite material based on polyurethane acrylate macromonomer[J]. Polymer Composites, 2009,30(6):731-736.
著作
(1)方少明,冯钠,闫春绵.高分子材料成型工程[M],中国轻工业出版社,2014
(2)陈志军,方少明.功能母料[M],化学工业出版社,2007
(3)陈志军,方少明.近代测试技术在高分子研究中的应用[M],成都科技大学出版社,1998
3.在研的项目
(1)NSFC-河南联合基金重点支持项目,U**,基于功能基元键合的聚氨酯基复合材料的生态化结构设计、合成及构效调控,2018.01-2021.12,264万元,在研,主持
(2)国家自然科学基金面上项目,**,基于功能砌块组装的多尺度复合材料构效调控研究,2016.01-2019.12,75万,在研,主持



以上是天任考研为考生整理【郑州轻工业大学材料与化学工程学院研究生导师方少明简介 郑轻方少明老师个人资料】的相关信息,考生在备考过程中想要了解【报名要求,考试大纲,院校排名,热门专业,报考人数,职业规划,免费电子版复习资料,复试调剂】,可以在右侧窗口留言,会有老师一对一为大家答疑解惑,助力各位考生顺利进入理想院校。

热门好课推荐

MORE

2026考研英语无忧班

时长:468课时


  • 刘晓艳

  • 张超

3000元
已报501人

2026考研数学无忧班

时长:604课时


  • 李永乐

  • 宋浩

4000元
已报198人

2026考研政治无忧班

时长:225.5课时


  • 孔昱力

2000元
已报337人

2026考研管综无忧班

时长:440h


  • 吕建刚

3980元
已报112人