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浙江师范大学化学与生命科学学院导师教师师资介绍简介-浙江师范大学童国秀

本站小编 Free考研考试/2021-04-11

导师介绍基本资料童国秀
女,1973年5月出生,博士,双龙********,博士生导师,无机学科主任,中国化学会会员。1995.9~2003.8,在鄂州大学建筑工程学院从事教学工作;2003.9~2009.6,在武汉理工大学材料复合新技术国家重点获工学硕士和博士学位;2009.8至今在浙江师范大学化学与生命科学学院从事教学和科研工作。2013.09~2014.09在University of California Riverside殷亚东教授课题组做访问****;2012.06~2013.01在Hong Kong Baptist University梁岩教授课题组做访问****。目前主要从事无机化学教学以及有机-无机纳米复合技术与磁性功能材料、电磁兼容材料、光催化材料等方面的研究。主持国家自然基金2项、省自然基金2项、省公益项目1项,省创新团队子项目和市级重点项目各1项。参与863课题1项、国家自然基金1项、省部级项目4项和军工合作项目1项。2018年高等学校科学研究优秀成果奖自然科学奖二等奖。已在《Adv. Fun. Mater.》、《Chem. Mater.》、《Nanoscale》、《Appl. Phys. Lett.》、《J. Mater. Chem.》、《J. Mater. Chem.A》《J. Alloy Compd.》、《CrystEngComm》、等权威刊物上发表论文80余篇,申请发明专利37件(授权24件)。同时也是Nanoscale, J. Mater. Chem., Materials Letters, Materials Science and Engineering B, Journal of Physics and Chemistry of Solids, Solid State Sciences, J. Alloy Compd.等期刊审稿人。
主讲课程主讲本科课程:无机化学、材料化学、普通化学、无机化学实验
主讲硕士研究生课程:功能材料与国防科技、先进功能材料、先进材料化学
主讲博士研究生课程:先进材料化学
学术兴趣及主要研究方向有机-无机纳米复合技术及功能材料
微波吸收与屏蔽电磁功能材料
超材料
光催化材料
科研项目主持国家自然科学基金“高Snoek极限异质纳米磁环的制备、微波激励机制与宽频带-高吸收性能”{项目批准号:**},2017.1~2020.12。(在研)
主持横向合作项目浙江三元电子科技有限公司“环氧树脂基雷达吸波剂的研制”项目批准号:KYH06Y17180},2017.10.15~2018.12.31。(已结题)
主持浙江省科技厅公益项目“用钢渣/铁基复合物设计和制备宽频带-高吸收免烧吸波瓷砖的研究”{项目批准号:2015C31022},2015.1~2017.12。(已结题)
主持浙江省自然基金项目“电磁可控轻质多孔铁海绵的绿色合成、结构与微波吸收特性” {项目批准号:LY14B010001},2014.1~2016.12。(已结题)
主持国家自然科学基金“电磁可控高效新型Fe/C磁性复合微波吸收材料的研究”{批准号:**},2012.01~2014.12。(已结题)
主持浙江省自然基金项目“海胆状铁/氧化铁纳微复合粒子的可控制备与电磁特性研究”{项目批准号:Y**},2010.6~2012.6。(已结题)
主持金华市科技工业类重点项目“高吸收低反射新型吸波磁砖的开发与应用”{项目批准号:2010A12066},2010.9~2012.12。(已结题)
主持浙江省磁性材料创新团队子项目“片层状Fe/C磁性核壳复合电磁波吸收材料的开发与应用”{批准号:2011R09006-06},2010.01~2012.12。(已结题)
参与国家自然科学基金“高效复合吸波材料:聚苯胺/吡咯@碳基磁性微粒的可控制备和性能” {批准号:B0105},2011.01~2012.12,(第二)。(已结题)
参与浙江省磁性材料重点创新团队“片层状Fe/C磁性核壳复合电磁波吸收材料的开发与应用”{批准号:2009R50006},2009.01~2011.12,(第二)。(已结题)
参与浙江省重大科技专项和优先主题计划“高吸收低反射新型Fe/C电磁屏蔽复合材料的研发与应用”{批准号:2010C11053},2010.01~2012.12,(第二)。(已结题)
参与国家高科技发展计划项目(863计划)“高性能水性电磁屏蔽涂料的设计与制备研究”{批准号:2006AA03Z461},2006.12~2008.12,(第十)。(已结题)
参与中国博士后科学基金项目(一等)“磁场诱导动态流化还原可控制备铁纳米线及电磁性能”{批准号:},2007.12~2009.05,(第三)。(已结题)。
参与教育部新世纪优秀人才支持计划“磁性金属中空纳微粒子的制备、结构与性能研究”{批准号:NCET-05-0660},2006.01~2008.12,(第六)。(已结题)
参与北京航天航空大学横向军工合作项目“直-XX直升机用雷达吸波材料”{批准号:200722YB01},2005.1~2006.12,(第二)。(已结题)
发表论文、专利和著作发表论文
Na He, Minmin Liu,Jiayi Qi,Jiayue Tong,Wen Sao,Xiaochen Yang,Lingxiu Shi,Guoxiu Tong*. Plasmon Resonance Strategy to Enhance Permittivity and Microwave Absorbing Performance of Cu/C Core-Shell Nanowires. CHEMICAL ENGINEERING JOURNAL, 2019,378, 122160(IF= 8.3, 一区top)
Zidong He, Minmin Liu, Lin Liu, Guoxiu Tong,* Wenhua Wu, and Xiaojuan Wang*. Distinctly Plasmon Resonance Enhanced Microwave Absorption of Strawberry-like Co/C/Fe/C Core–Shell Hierarchical Flowers via Engineering the Diameter and Interparticle Spacing of Fe/C Nanoparticles. RSC Advances9.39 (2019): 22644-22655.
Na He, Zidong He,Lin Liu,Yao Lu,Fanqi Wang, Wenhua Wu,Guoxiu Tong*. Ni2+guidedphase/structure evolutionand ultra-wide bandwidth microwave absorption of CoxNi1-x alloy hollow microspheres. Chemical Engineering Journal, 2019,doi.org/10.1016/j.cej.2019.122743(IF= 8.3, 一区top)
Lin Liu, Na He, Tong Wu, Panbing Hu, Guoxiu Tong*. Co/C/Fe/C HierarchicalFlowers with Strawberry-like Surface as Surface Plasmon for Enhanced Permittivity, Permeability, and Microwave Absorption Properties. CHEMICAL ENGINEERING JOURNAL, 2019, 335(1), 103–108.(IF= 8.3,一区top)
Jia Cheng Sun,ZidongHe,Wenjing Dong, WenhuaWu, Guoxiu Tong*. Broadband and strong microwave absorption of Fe/Fe3C/C core–shell spherical chainsenhancedby dual dielectric relaxation and dual magnetic resonances, Journal of Alloys and Compounds,2019, 782(25),193–202.
Lin Liu, Na He, Jiacheng Sun, Panbing Hu, Rujia He, Jinxiu Cheng, Weifu Tian, Guoxiu Tong*. Tailoring impedance match and enhancing microwave absorption of Fe3O4/Bi24Fe2O39/Bi hollow porous microrods by controlling their composition. JOURNAL OF MATERIALS SCIENCE, 2018, 28(5),575–583(IF= 2.599, 三区).
Lin Liu, Zidong He, Yanting Zhao, Jiacheng Sun, Guoxiu Tong.Modulation of the composition and surface morphology of expandedgraphite/Fe/Fe3O4composites for plasmon resonance-enhancedmicrowave absorption. Journal of Alloys and Compounds 765 (2018) 1218–1227. (IF=3.014, 二区top, 引用0次)
Chen Jin, Zidong He, Yanting Zhao, Yefei Pan, Wenhua Wu, Xiaojuan Wang,* and Guoxiu Tong*. Controllable Synthesis, Formation Mechanism, and Enhanced Microwave Absorption of Dendritic AgFe Alloy/Fe3O4Nanocomposites. CrystEngComm, 2018, 20, 1997–2009.
Yun Liu, Yiwei Fu, Lin Liu, Wei Li, Jianguo Guan, Guoxiu Tong. Low-Cost Carbothermal Reduction Preparation of Monodisperse Fe3O4/C Core–Shell Nanosheets for Improved Microwave Absorption.ACS Appl. Mater. Interface.,2018, 10(19): 16511–16520.
Yanting Zhao, Lin Liu, Jianv Han, Wenhua Wu,and Guoxiu Tong.* Effective modulation of electromagnetic characteristics by composition and size in expanded graphite/Fe3O4nanoring composites with high Snoek's limit. Journal of Alloys and Compounds, 2017, 728, 100-111.(IF=3.014, 二区top, 引用0次)
Tong Wu, Yanting Zhao, Yana Li, Wenhua Wu,and Guoxiu Tong.*Controllable Synthesis of CuxFe3-xO4@Cu Core-Shell Hollow Spherical Chains for Broadband, Lightweight Microwave Absorption. CHEMCATCHEM, 2017, 9(18), 3486–3496.(IF= 4.724, 二区, 引用0次)
Kedan Jiang, Yun Liu, Yefei Pan, Ru Wang, Panbing Hu, Rujia He, Lingli Zhang, Guoxiu Tong.*Monodisperse NixFe3-xO4nanospheres: Metal-ion-steered size/composition control mechanism, static magnetic and enhanced microwave absorbing properties.Appl. Surf. Sci., 2017, 404, 40–48.(IF=3.15, 二区top, 引用2次)
Yanting Zhao, Lin Liu, Kedan Jiang, Mengting Fan, Chen Jin, Jianv Han, Wenhua Wu, and Guoxiu Tong.*Distinctly Enhanced Permeability and Excellent Microwave Absorption of Expanded Graphite/Fe3O4Nanoring Composites. RSC Advance, 2017, 7, 11561–11567.(IF=3.289, 二区, 引用0次)
Cui Tingting, Yanting Zhao, Yao Qian, Yali Shao, Mengting Fan,Jiuju Feng, Wenhua Wu, Guoxiu Tong.* Controllable synthesis and formation mechanism of single-crystal b-Co(OH)2microrings as sensors for detection of nitrite ions.Mater. Chem. Phys., 2017, 193(1), 371–379.(IF= 2.101, 二区top, 引用0次)
Yanting Zhao, Tingting Cui, Tong Wu, Chen Jin, Ru Qiao, Yao Qian, and Guoxiu Tong.* Polymorphous ZnO nanostructures: Zn polar surface-guided size and shape evolution mechanism and enhanced photocatalytic activity. CHEMCATCHEM, 2017, 9(16): 3180–3190(IF= 4.724, 二区, 引用0次)
Yanting Zhao, Lin Liu, Tingting Cui, Chen Jin, Guoxiu Tong,*Yao Qian, Wenhua Wu. Enhanced photocatalytic properties of ZnO/reduced graphene oxide sheets (rGO) composites with controllable morphology and composition.Appl. Surf. Sci., 2017, 412(1), 58–68.(IF=3.150, 二区top, 引用2次)
Yana Li, Tong Wu, Keying Jin,Yao Qian, Naxin Qian, Kedan Jiang,Wenhua Wu,Guoxiu Tong.* Controllable synthesis and enhanced microwave absorbing properties of Fe3O4/NiFe2O4/Ni heterostructure porous rods. Appl. Surf. Sci., 2016, 387: 190–201.(IF=3.150, 二区top, 引用11次)
YunLiu, Yana Li, Kedan Jiang, Guoxiu Tong,*Tianxi LvandWenhua Wu. Controllable synthesis of elliptical Fe3O4@C and Fe3O4/Fe@C nanorings for plasmon resonance-enhanced microwave absorption. J. Mater. Chem.C, 2016, 4 (28): 7316-7323.(IF=5.066, 1区top, 引用18次)
Yana Li, Tong Wu, Kedan Jiang, Guoxiu Tong,*Keying Jin, Naxin Qian, Leihong Zhao, and Tianxi Lv. Mn2+induced structure evolution and dual-frequency microwave absorption of MnxFe3?xO4hollow/porous spherical chains made by a one-pot solvothermal approach.J. Mater. Chem.C, 2016, 4(29): 7119-7129.(IF=5.066, 一区top, 引用4次)
Yun Liu, Tingting Cui, Tong Wu, Yana Li, Guoxiu Tong.*Excellent microwave absorbing properties of elliptical Fe3O4nanorings made by a rapid microwave-assisted hydrothermal approach. Nanotechnology, 2016, 27(16): 165707.(IF= 3.573, 二区top, 引用19次)
Guoxiu Tong,*Yun Liu, Tingting Cui, Yana Li, Yanting Zhao, Jianguo Guan. Tunable dielectric properties and excellent microwave absorbing properties of elliptical Fe3O4nanorings. Appl. Phys. Lett., 2016. 108, 072905.(IF= 3.142, 二区top, 引用23次, 自然指数期刊)
Yun Liu, Tingting Cui, Yana Li, Yucheng Ye, Guoxiu Tong.*Effects of crystal size and sphere diameter on static magnetic and electromagnetic properties of monodisperse Fe3O4microspheres.Mater. Chem. Phys., 2016, 173: 152–160.(IF= 2.101, 二区top, 引用11次)
Tong Wu, Yun Liu, Tingting Cui, Yanting Zhao, Yana Li, Guoxiu Tong.* Facile hydrothermal synthesis of Fe3O4/C core-shell nanorings for efficient low-frequency microwave absorption, ACS Appl. Mater. Interfaces,2016, 8(11): 7370-7380.(IF= 7.145, 一区top, 引用60次, 高被引用)
Yucheng Ye, Yanting Zhao, Liuliu Ni, Kedan Jiang, Guoxiu Tong,*Yuling Zhao, Botao Teng.* Facile synthesis of unique NiO nanostructures for efficiently catalytic conversion of CH4at low temperature. Appl. Surf. Sci.,2016, 362, 20–27.(IF=3.15, 二区top, 引用3次)
Chaoli Tong, YunLiu, Fangfang Du, Guoxiu Tong,*Liangchao Li. Enhanced microwave electromagnetic characteristics of porous ZnO/Ni/ZnxNiyFe3?x?yO4hybrid micro-hexahedra.Mater. Chem. Phys., 2015, 163, 1-10.(IF= 2.101, 二区top, 引用5次)
Guoxiu Tong,* Yun Liu, Fangting Liu, andJianguo Guan. Facilely gas-flow-induced CVD synthesis and tunable electromagnetic characteristics of centipede-shaped iron/cementite/multiwalled carbon nanotube (Fe/Fe3C/MWCNT) heterostructures.Surf. Coat. Tech., 2015, 283, 286-297.(IF=2.139, 三区, 引用7次)
Guoxiu Tong,* Yun Liu, Tong Wu, Yucheng Ye, Chaoli Tong. High-quality elliptical iron glycolate nanosheets: selective synthesis and chemical conversion into FexOynanorings, porous nanosheets, and nanochains with enhanced visible-light photocatalytic activity.Nanoscales, 2015, 7, 16493–16503.(IF= 7.76, 一区top, 引用21次)
Guoxiu Tong,*Yun Liu, Tong Wu, Chaoli Tong, and Fangfang Du. H2O-Steered size/phase evolution and magnetic property of large-scale, monodisperse FexOynanomaterials, J. Mater. Chem. C, 2015, 3, 5506-5515.(IF= 5.066, 一区top, 引用12次)
Junhai Shen, Jiantao Feng, Liangchao Li,*Guoxiu Tong, Yabing He. Synthesis and excellent electromagnetic absorbing properties of copolymer (N-methylpyrrole-co-pyrrole) and Ba–Nd–Cr ferrite. J. Alloys Compd.,2015, 632, 490-499.(IF=3.014, 二区top, 引用10次)
Guoxiu Tong,*Fangting Liu, Wenhua Wu, Fangfang Du and Jianguo Guan. Rambutan-like Ni/MWCNT heterostructures: Easy synthesis, formation mechanism, and controlled static magnetic and microwave electromagnetic characteristics. J. Mater. Chem. A, 2014,2, 7373-7382.(IF= 8.262,一区top, 引用55次)
Guoxiu Tong,*Yun Liu, Jianguo Guan. In-situ gas bubbles-assisted one-step synthesis of polymorphous Co3O4nanostructures for lithium ion battery electrodes,J. Alloys Compd., 2014, 601, 167-174.(IF=3.014, 二区top, 引用15次)
Fangfang Du, Guoxiu Tong,* Chaoli Tong, Yun Liu and Jianqing Tao. Selective synthesis and shape-dependent microwave electromagnetic properties of polymorphous ZnO complex architectures. J. Mater. Res., 2014, 29, 649-656.(IF= 1.579, 三区, 引用7次)
Guoxiu Tong,* Fangting Liu, Wenhua Wu, Chaoli Tong, Ru Qiao and Huichen Guo. Facile bubble-assisted evaporation-induced assembly of high-density arrays of Co3O4nano/microlotus leaves: fluorescent properties, drug delivery, and biocompatibility. CrystEngComm, 2014, 16, 1645-1651.(IF=3.849, 二区, 引用3次)
Guoxiu Tong,*Fangfang Du, Lingjing Xiang, Fangting Liu,Lulu Mao and Jianguo Guan.Generalized green synthesis and formation mechanism of sponge-Like ferrite micro-polyhedra with tunable structure and composition. Nanoscales, 2014, 6, 778-787.(IF=7.76, 一区top, 引用27次)
殷巧巧, 乔儒,* 童国秀. 离子掺杂氧化锌光催化纳米功能材料的制备及其应用. 化学进展2014, 26, 1619-1632.
Guoxiu Tong,* Fangfang Du, Yan Liang, Qian Hu,Ruo-Nan Wu, Jianguo Guan and Xian Hu.Polymorphous ZnO complex architectures: selective synthesis, mechanism, surface area- and Zn-polar plane-codetermining antibacterial activity.J. Mater. Chem.B,2013, 1, 454-463. (IF= 4.872, 一区top, 引用39次)
Guoxiu Tong,*Fangfang Du, Wenhua Wu, Ruonan Wu, Fangting Liu and Yan Liang. Enhanced reactive oxygen species (ROS) yields and antibacterial activity of spongy ZnO/ZnFe2O4hybrid micro-hexahedra selectively synthesized through a versatile glucose-engineered co-precipitation/annealing process. J. Mater. Chem. B, 2013, 1, 2647-2657.(IF= 4.872, 一区top, 引用30次)
Guoxiu Tong, Jianguo Guan,* andQingjie Zhang. In-situ generated gas bubbles-directed self-assembly synthesis, peculiar magnetic and electrochemical properties of vertically aligned arrays of high-density Co3O4nanotubes.Adv. Funct. Mater., 2013, 23, 2405-2413.(IF= 11.382, 一区top, 引用38次)
Qian Hu, Guoxiu Tong,* Wenhua Wu, Fangting Liu, Haisheng Qian, Jianguo Guanand Danyan Hong. Selective preparation and novel microwave electromagnetic characteristics of polymorphous ZnO architectures made from a facile one-step ethanediamine (en)-assisted hydrothermal approach.CrystEngComm,2013, 15,1314-1323.(IF= 3.849, 二区, 引用38次)
Liangchao Li,* Keyu Chen, Hui Liu, Guoxiu Tong, Haisheng Qian, Bin Hao. Attractive microwave-absorbing properties of M-BaFe12O19ferrite. J. Alloy. Compd., 2013, 557, 11-17. (IF=3.014, 二区top, 引用60次)
Xinhui Liu, Jinlin Hu, Jiajia Li, Yong Hu, Yong Shao, Haijian Yang, Guoxiu Tong, Haisheng Qian.*Facile synthesis of Ag2WO4/AgCl nanorods for excellent photocatalytic properties. Mater. Lett., 2013, 91, 129-132.(IF= 2.437, 二区top, 引用29次)
Bin Hao, Liangchao Li,* Yuping Wang, Haisheng Qian, Guoxiu Tong, Haifeng Chen, Keyu Chen. Electrical and microwave absorbing properties of polypyrrole synthesized by optimum strategy. J. Appl. Polym. Sci., 2013, 127, 4273-4279.(IF= 1.866, 四区, 引用4次)
Guoxiu Tong,* Jinhao Yuan, Wenhua Wu,Qian Hu, Haisheng Qian, Liangchao Li and Jiaping Shen.Flower-like Co superstructures: Morphology and phase evolution mechanism and novel microwave electromagnetic characteristics.CrystEngComm, 2012, 14, 2071-2079.(IF= 3.849, 二区, 引用57次)
Guoxiu Tong,*Fangting Liu, Wenhua Wu, Jiaping Shen, Xian Hu and Yan Liang. Polymorphous a- and b-Ni(OH)2complex architectures: Morphological and phasal evolution mechanism and enhanced catalytic activity as non-enzymatic glucose sensors.CrystEngComm,2012, 14, 5963-5973.(IF= 3.849, 二区, 引用29次)
Guoxiu Tong,* Qian Hu, Wenhua Wu, Wei Li, Haisheng Qian and Yan Liang.Submicrometer-sized NiO octahedra: facile one-pot solid synthesis, formation mechanism, and chemical conversion into Ni octahedra with excellent microwave absorbing properties. J. Mater. Chem.,2012, 22, 17494-17504.(IF=6.67, 一区, 引用73次)
Guoxiu Tong,* Wenhua Wu, Qian Hu,Jinhao Yuan, Ru Qiao and Haisheng Qian.Enhanced electromagnetic characteristics of porous iron particles made by a facile corrosion technique. Mater. Chem. Phys.,2012, 132, 563-569.(IF=2.101, 二区top, 引用19次)
Keyu Chen, Qingqing Xu, Liangchao Li, Guoxiu Tong, Haisheng Qian, Qiushi Xiao and Feng Xu. Controlled fabrication and electrical-magnetic properties of Poly (OT-co-AN)/Ba0.8 La0.2Al2Fe10O19composites. Sci. China Technol. Sci., 2012, 55, 6-15.(IF= 1.441, 四区, 引用5次)
Guoxiu Tong,*Jinhao Yuan,Wenhua Wu, Qinqin Zhang, Xi Cen and Qi Tang.Enhanced static magnetic properties, multiresonance behaviour and novel frequency-selective surface absorption properties of hierarchical flower-like hexagonal close-packed Co superstructures. Micro & Nano Letters.2012, 7, 492-495.(IF= 0.723, 四区, 引用2次)
Xinhui Liu, Haisheng Qian,* Yaping Ji, Zhengquan Li, Yong Shao, Yong Hu, Guoxiu Tong, Liangchao Li, Weidong Guo,* Huichen Guo.* Mesoporous silica-coated NaYF4 nanocrystals: facile synthesis, in vitro bioimaging and photodynamic therapy of cancer cells. RSC Adv., 2012, 2, 12263-12268.(IF= 3.289, 二区, 引用19次)
Jinlin Hu, Haisheng Qian,* Yong Hu, Zhengquan Li, Guoxiu Tong, Taokai Ying, Peijun Gong, Shiyou Hao, Hongbao Zhang and Liangchao Li. Self-assembly of TiO2composite microspheres: Facile synthesis, characterization and photocatalytic activities. CrystEngComm, 2012, 14, 7118-7122.(IF= 3.849, 二区, 引用10次)
Guoxiu Tong,* Qiao Hua, Wenhua Wu, Mingyue Qin, Liangchao Li and Peijun Gong. Effect of liquid-solid ratio on the morphology, structure, conductivity, and electromagnetic characteristics of iron particles.Sci. China Technol. Sci., 2011, 54, 484-489.(IF= 1.441,四区,引用10次)
Guoxiu Tong,*Jianguo Guan and Qingjie Zhang. Goethite hierarchical nanostructures: glucose-assisted synthesis, chemical conversion into hematite with excellent photocatalytic properties. Mater. Chem. Phys.2011, 127, 371-378.(IF= 2.101, 二区top, 引用52次)
Guoxiu Tong,*Jinhao Yuan, Ji Ma,Jianguo Guan, Wenhua Wu, Liangchao Li, Ru Qiao.Polymorphous Fe/FexOycore/shell composites: One-step oxidation preparation, composition control, and static magnetic and electromagnetic characteristics. Mater. Chem. Phys.,2011, 129, 1189-1194.(IF=2.101, 二区top, 引用21次)
Guoxiu Tong,*Wenhua Wu, Qiao Hua, Yuqing Miao, Jianguo Guan and Haisheng Qian. Enhanced electromagnetic characteristics of carbon nanotubes/carbonyl iron powders complex absorbers in 2–18 GHz ranges. J. Alloys Compd.,2011,509, 451-456.(IF=3.014, 二区top, 引用89次)
Guoxiu Tong,*Wenhua Wu, Jianguo Guan, Haisheng Qian, Jinhao Yuan and Wei Li.Synthesis and characterization of nanosized urchin-like a-Fe2O3and Fe3O4: microwave electromagnetic and absorbing properties.J. Alloys Compd.,2011, 509, 4320-4326.(IF=3.014, 二区top, 引用105次)
Guoxiu Tong,* Ji Ma, Wenhua Wu, Qiao Ru and Haisheng Qian. Grinding speed dependence of microstructure, conductivity, and microwave electromagnetic and absorbing characteristics of the flaked Fe particles. J. Mater. Res.,2011,26, 682-688.(IF= 1.579, 三区, 引用20次)
Guoxiu Tong,*Wenhua Wu, Ru Qiao and Jinhao Yuan. Morphology dependence of static magnetic and microwave electromagnetic characteristics of polymorphic Fe3O4nanomaterials. J. Mater. Res.,2011,26, 1639–1645.(IF= 1.579, 三区, 引用34次)
Guoxiu Tong,* Wenhua Wu, Jianguo Guan, Jianping Wang, Ji Ma, Jinhao Yuan and Sunli Wang.Solution synthesis and novel magnetic properties of ball-chain iron nanofibers. J. Mater. Res., 2011, 26, 2590-2598.(IF= 1.579, 三区, 引用9次)
Guoxiu Tong,* Mi Hong, Jiangguo Guan, Jinhao Yuan, Wenhua Wu and Haisheng Qian. Enhanced microwave absorption properties of Fe nanotubes fabricated by a facile gas bubble-engaged assembly technique, Micro & Nano Letters,2011, 6, 722-724.(IF=0.723, 四区, 引用9次)
Xing Huang, Jianguo Guan, Zhidong Xiao, Guoxiu Tong, Fangzhi Mou and Xi’an Fan. Flower-like porous hematite nanoarchitectures achieved by complexation–mediated oxidation–hydrolysis reaction. J. Colloid Interf. Sci.,2011, 357, 36-45.(IF= 3.782, 二区, 引用27次)
Keyu Chen, Liangchao Li,* Guoxiu Tong, Ru Qiao, Bin Hao, Xiaoxi Liang. Fabrication and absorbing property of microwave absorbers based on BaAl2Fe10O19and poly(o-toluidine). Synthetic Met., 2011, 161, 2192-2198.(IF= 2.299, 二区, 引用11次)
Chen Xiang, Liangchao Li,*Suyong Jin, Baiqun Zhang, Haisheng Qian and Guoxiu Tong. Expanded graphite/polyaniline electrical conducting composites: Synthesis, conductive and dielectric properties. Mater. Lett., 2010, 64, 131-1315.(IF=2.437, 二区top, 引用16次)
Haisheng Qian,* Enbo Zhu, Shunji Zheng, Zhengquan Li, Yong Hu, Changfa Guo, Xingyun Yang, Liangchao Li, Guoxiu Tongand Huichen Guo. One-pot synthesis of biocompatible Te@phenol formaldehyde resin core–shell nanowires with uniform size and unique ?uorescent properties by a synergized soft–hard template process. Nanotechnology,2010, 21, 495602-495607.(IF= 3.573, 二区top, 引用4次)
Xi'an Fan, Jianguo Guan,* Zhongzhi Li, Fangzhi Mou, Guoxiu Tongand Wei Wang.One-pot low temperature solution synthesis, magnetic and microwave electromagnetic properties of single-crystal iron submicron cubes.J. Mater. Chem., 2010, 20, 1676-1682.(IF=6.67, 一区top, 引65次)
Guoxiu Tong, Jianguo Guan,* Zhidong Xiao, Xing Huang and Yao Guan. In-situ generated gas bubble-assisted modulation of the morphologies, photocatalytic and magnetic properties of ferric oxide nanostructures synthesized by thermal decomposition of iron nitrate.J. Nanopart. Res., 2010, 12, 3025-3037.(IF= 2.101, 二区, 引用52次)
Guoxiu Tong,* Jianguo Guan,Wenhua Wu,Liangchao Li ande Qiao Hua. Preparation and electrochemical properties of urchin-like α-Fe2O3nanomaterials,Sci. China Technol. Sci., 2010, 53, 1897-1903.(IF= 1.441, 四区, 引用13次)
Fangzhi Mou, Jianguo Guan,* Zhigang Sun, Xi-An Fan, Guoxiu Tong. In-situ generated dense shell-engaged ostwald ripening: A facile controlled-preparation for BaFe12O19hierarchical hollow fiber arrays. J. Solid State Chem., 2010, 183, 736-743.(IF= 2.265, 三区, 引用52次)
Xi'an Fan, Jianguo Guan,*Wei WangandGuoxiu Tong. Morphology evolution, magnetic and microwave absorption properties of nano/submicron iron particles reduced at different temperature. J. Phys. D: Appl. Phys.,2009,42,75006-75012.(IF=2.772, 二区, 引用40次)
Wei Li, Jianguo Guan,*Wei Wang, Guoxiu TongandXi’an Fan. Synthesis and formation mechanism of hematite hollow microspheres by a one-pot templateless surfactant-free hydrothermal process. Mater. Chem. Phys. 2009, 118, 496-500.(IF=2.101, 二区top, 引用14次)
Guoxiu Tong, Jianguo Guan,* Zhidong Xiao, Fangzhi Mou, Wei Wang. In situ generated H2bubble-engaged assembly: A one-step approach for shape-controlled growth of Fe nanostructures. Chem. Mater.2008, 20, 3535-3539.(IF= 9.407, 一区top, 引用62次)
发明专利

官建国,童国秀,刘韩星。Co3O4纳米管阵列的制备方法。中国专利。2011-02-09(专利号:ZL2.9)
李良超,童国秀,刘徽,等。高效宽频吸波涂层材料及使用方法。中国专利。2012-07-04(专利号:ZL 2.1)
童国秀,官建国,吴文华,等。海胆状(羟基)氧化铁纳米材料的制备方法。中国专利。(专利号:ZL1.X)2012-05-30
童国秀,吴文华,缪煜清,李良超,等。八面体镍纳微材料的制备方法。中国专利。2011-08-24(专利号:ZL6.0)
童国秀,吴文华,袁进好,李良超,胡倩,马吉,杨幸芸。新型铁/碳纳米管分级纳米复合材料的原位制备方法。中国专利。(2015-12-09专利号:ZL 2011 1 **.6)
童国秀,袁进好,吴文华,李良超,等。花状镍/碳纳米管复合材料的制备方法。中国专利。2013-05-15(专利号:ZL 7.2)
钱海生,童国秀,傅熠,陈碧翠,陈丽鲜,祝妍,刘新慧,李良超。一种用于处理染料废水的新型碳材料的低温制备方法。中国专利。2013-05-15(专利号:ZL 6.8)
童国秀,吴文华,洪咪,赵暄。一组海绵状多孔复合氧化物纳微多面体的制备方法。中国专利。2014-09-03(专利号:ZL7.4)
梁岩,方孝贤,童国秀。除异味抗微生物功能织物的制备方法。中国专利。(专利号:ZL1.3)
梁岩,方孝贤,童国秀。净化室内空气污染的饰品。中国专利。2015-05-13(专利号:ZL 4.4)
梁岩,方孝贤,童国秀。抗菌液体的制备方法及其应用。中国专利。(申请号:CN2.8)
乔儒,殷巧巧,朱兰兰,吴文杰,李苗苗,童国秀。镍掺杂氧化锌分级结构光催化纳米材料及其制备方法。中国专利。2015-12-02(专利号:ZL 5.0)
乔儒,殷巧巧,朱兰兰,吴文杰,李苗苗,童国秀。碳包覆金属掺杂氧化锌复合光催化纳米材料及其制备方法。中国专利。(申请号:CN7.8)
乔儒,殷巧巧,朱兰兰,吴文杰,李苗苗,童国秀。一种氧化锌基复合光催化纳米材料及其制备方法。中国专利。2015-12-30(专利号:ZL6.2)
童国秀,刘云,吴文华,童超丽。一种单分散磁性纳米环及其制备方法与应用。中国专利。2016-07-20(专利号:ZL2.3)
童国秀,崔婷婷,刘云,倪镏柳,吴文华。单分散的纳米片和/或纳米环及其制备和应用。中国专利。2016-09-21(专利号:ZL1.1)
童国秀,刘云,吴文华,吕天喜。一种多尺度、均一、单分散磁性微球及其制备方法。中国专利。2017-02-22(专利号:ZL8.2)
童国秀,李亚娜,崔婷婷,吴文华。一种磁性异质结构纤维及其制备方法与应用。中国专利。2017-04-05(专利号:ZL1.4)
童国秀,刘云,崔婷婷,吴文华,李亚娜。单分散梭形纳米片及其制备方法。中国专利。2017-03-22(专利号:ZL3.8)
童国秀,刘云,崔婷婷,吴文华。磁性纳米环微波吸收剂的制备与应用。中国专利。2017-05-10(专利号:ZL1.X)
童国秀,李亚娜,赵彦婷,金可英,蒋科丹,钱纳新,林建军,吴文华。磁性球链及其制备方法。中国专利。2017-12-22(专利号:ZL6.2)
童国秀,赵彦婷,洪华嫦,钱瑶,钱纳新,樊梦婷,吴文华。一种电磁增强碳磁复合材料及其制备方法与应用。中国专利。2017-12-22(专利号:ZL7.2)
童国秀,杜芳芳,童超丽,腾波涛,吴文华。一种钴基催化剂及其制备方法与应用。中国专利。2018-08-07(专利号:ZL9.5)
童国秀,刘云,吕天喜,吴文华。磁性微纳米片及其制备方法与应用。中国专利。2018-04-24(ZL9.5)
童国秀,崔婷婷,李亚娜,钱瑶,邵雅丽,吴文华,乔儒,宫培军。单分散ZnO微纳米材料及其制备方法和应用。中国专利。2018-05-04(专利号:ZL5.8)
童国秀,赵彦婷,乔儒,金晨,潘叶飞,王茹,吴文华。分级枝状磁性合金材料及其制备方法与应用。中国专利。2018-11-30(专利号:ZL3.3)
童国秀,刘琳,何茹徍,陈锦绣,胡潘斌,宫培军,乔儒,吴文华。一种单分散铁氧体微纳米片及其制备方法。中国专利。申请号:CN4.1。
童国秀,赵彦婷,刘琳,潘叶飞,金晨,王茹,吴文华。一种微波吸收硅藻泥涂料的制备方法及应用。中国专利。申请号:CN2.2。
童国秀,赵彦婷,韩佳女,张玲梨,张高川,乔儒,吴文华。碳磁超结构复合材料及其制备方法与应用。中国专利。申请号:CN3.7。
宫培军,梁天华,刘振锋,董孟杰,童国秀,乔儒,袁军华,王瑶. 具有增强光动力治疗活性的纳米复合材料及其制备方法,中国专利。申请号:CN3.0。
童国秀,刘琳,孙嘉诚,乔儒,陈锦绣,宫培军,韩佳女,胡潘冰,吴文华。一种磁性合金中空微球及其制备方法,中国专利。申请号:CN4.5。
童国秀,刘琳,胡潘冰,乔儒,孙嘉诚,宫培军,何茹佳,陈锦绣,吴文华。一种等离子共振电磁增强双金属-介质异质材料及其制备与应用,中国专利。申请号:CN3.0
童国秀,和子栋,王帆琦,陈锡炜,孙嘉诚,郭超,吴文华。一种宽带轻质超材料吸波结构的制备与应用。中国专利。申请号:CN4.7。
童国秀,何娜,童佳悦,戚佳一,陈晨,吴文华。一种核壳异质结构纳米纤维及其制备和应用。中国专利。申请号:CN5.6。
童国秀,刘琳,何茹佳,韩佳女,董雯静,胡潘冰,吴文华,双金属钴基核壳材料及其制备方法与应用。中国专利。申请号:CN0.3。
童国秀,何娜,童佳悦,杨晓晨,邵雯,施灵秀,董雯静,吴文华。一种核壳异质结构磁性纤维及其制备与应用方法。中国专利。申请号:CN9.6。
和子栋,童国秀,陆瑶,王帆琦,陈锡炜,郭超,吴文华。一种手性吸波超材料及其制备与应用。中国专利。申请号:CN3.X。

教材出版
(1)童国秀主编,无机化学实验(英汉双语版),科学出版社,2019,8。(978-7-03-061183-3)
获奖情况2008年获“纳米复合雷达吸波涂料”教育部科技成果完成者证书;
2009获武汉理工大学优秀博士论文;
2010年获浙江师范大学优秀“校中青年骨干教师”;
2011获浙江师范大学生化学院教学质量优秀奖;
2012获出国留学人员基金(4);
2015~2016获浙江师范大学优秀班主任;
2018新时代浙江省“千名好支书”。
2018年高等学校科学研究优秀成果奖自然科学奖二等奖。
2019年浙江省教工委第六届“师德先进个人”。
2019年获浙江省第四届高校“最受师生喜爱的书记”。
指导学生情况 先后指导研究生10人,其中,毕业生6人,2人获国家奖学金、3人获耿儿奖学金、3人获得校优秀毕业生、1人获得省优秀毕业生。指导本科生毕业论文共50余人。指导学生参与各类学生科研项目近20项,其中,国家级项目5项,省级项目4项。指导本科生发第一作者文章8篇,获省级竞赛奖8项,国家金奖1项;2人获耿儿奖学金,2人获国家级奖学金,多人保送北大、复旦等名校或出国深造。指导学生省级课题4项,国家级课题7项:
华桥,等。片层状Fe/C磁性核壳复合电磁波吸收材料的开发与应用。2009年浙江省新苗人才计划项目(指导教师1/1);
马吉,等。片状Fe/TiO2核壳多功能复合粒子的选控制备与电磁特性研究。2011浙江省苗人才计划项目(指导教师1/1);
项玲静,等。轻质异质结构海绵的绿色合成及其在微波吸收中的应用。2013国家级大学生创新创业训练计划项目(指导教师1/1);
童超丽,等。多孔钴基杂化催化材料的可控备及其在甲烷低温氧化中的应用。2014国家级大学生创新创业训练计划项目(指导教师1/1);
叶宇城,等。电磁可控轻质多孔Fe3O4/Ni异质纤维的可控制备与微波吸收特性。2015国家级大学生创新创业训练计划项目(指导教师1/1);
蒋科丹,等。用膨胀石墨负载Fe3O4纳米环制备高磁导率、宽频带-高吸收材料的研究。2016国家级大学生创新创业训练计划项目(指导教师1/1);
钱瑶,等。高效水泥基钢渣/木炭复合微波吸波材料的研制。2016浙江省苗人才计划项目(指导教师1/1);
赵彦婷,等。具有微波吸收功能的硅藻泥涂料的研制。2017浙江省苗人才计划项目(指导教师1/1);
金晨,等。电磁可控ZnO/Fe异质纤维的构筑与等离子共振微波吸收特性。2017国家级大学生创新创业训练计划项目(指导教师1/1)。
孙嘉诚,等。双金属异质材料的等离子共振增强机理与“宽频带-轻质-高吸收”微波特性。2018国家级大学生创新创业训练计划项目(指导教师1/1)。
王琦帆,等。基于螺旋超结构“宽频带-高吸收-低反射”吸波磁砖的研发。2019国家级大学生创新创业训练计划项目(指导教师1/1)
指导学生参加比赛获奖情况:
1. 2011年5月获浙江省第十二届“挑战杯”大学生课外科技作品竞赛三等奖
2. 2013年5月获浙江省第十三届“挑战杯”大学生课外学术科技作品竞赛二等奖
3. 2017年5月获浙江省第十五届“挑战杯”·富阳大学生课外学术科技作品竞赛三等奖
4. 2017年8月获第三届省“互联网+”大学生创新创业大赛银奖
5. 2017年11月获金华市创新创业大赛一等奖
6. 2018年5月获“创青春”浙江省大学生创业大赛银奖
7. 2018年5月获”创青春‘’浙江省第十一届“挑战杯·萧山”大学生创业大赛荣获银奖
8. 2018年7月获“创青春”全国大学生创业大赛网络信息经济专项赛(创意类)金奖
9. 2018年7月获第四届省“互联网+”大学生创新创业大赛
10.2019年5月获浙江省第十六届“挑战杯”特等奖和最佳表现奖
11. 2019年7月获2019创客中国·金华好项目中小微企业创新创业大赛
12.2019年8月获2019创客中国·浙江好项目中小微企业创新创业大赛优胜
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