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硕士生导师

黄文欢

2016年04月14日 14:53  点击:[]

姓名

黄文欢

性别

出生年月

1987/09

民族

籍贯

福建福州

最高学位

博士

社会兼职

中国化学会高级会员,陕西省化学会会员

中国人民解放军海军士官学校客座教授

学术兼职

Rare Metals》、《稀有金属》两刊青年编委、《Tungsten》青年编委、《稀有金属材料与工程》青年编委

联系方式

huangwenhuan@sust.edu.cn

学习及工作经历

2005.09-2009.07西北大学 化学(基地班)学士

2009.09-2014.07西北大学材料化学博士(导师:王尧宇教授)

2016.03-2017.03 University of Arizona(合作导师:郑智平教授)

2017.11-2020.04中科院福建物构所(合作导师:张健研究员)

2014.07-至今陕西科技大学化学与化工学院

行政任职经历

2021.07-至今 陕西科技大学化工学院(分管科研、研究生、国际交流)

2021.09-2022.09陕西省教育厅科学技术处(借调)

研究方向

多氮唑杂化框架的设计合成

能源存贮及转化、电磁波吸收屏蔽、固态电池关键材料的应用研究

个人简介

入选“2023年度全球前2%顶尖科学家榜单”,陕西省特支计划-青年拔尖人才、陕西省科学家+工程师创新团队首席科学家、陕西省科技新星,近年来主持国家项目2项、省部级各类科研项目9项、教学项目3项,获得陕西省高校科学技术奖一等奖(第1完成人)1项,陕西省人才计划项目2项。Angew Chem. Int. Ed.Advanced MaterialsAdvanced ScienceNano-Micro LettersCarbon EnergyMatterJournal of Materials Chemistry AEnergy & Environmental MaterialsChemical Engineering Journal等国际期刊上发表SCI论文50余篇,其中受邀撰写综述6篇,高被引论文6篇,热点论文2篇。授权国家发明专利7项,其中4项实现企业转化。曾受邀请在国内外学术会议上作报告16次,媒体转载相关研究成果20余次。组织学生参加挑战杯课外学术科技竞赛获得省级二等奖2项、三等奖1项,获得陕西省第六届研究生创新成果展省级一等奖1项,省级创新基金1项;培养研究生获得优秀毕业生优秀硕士毕业论文国家奖学金研究生高水平科研成果奖励等。

人才及获奖

1)人才称号

1. 陕西省三秦英才特殊支持计划-青年拔尖人才(2023年)

2. 陕西省“科学家+工程师”创新团队首席科学家(2023年)

3. 陕西省科技新星(2022年)

4. 陕西省高校科协青年人才托举计划(2021年)

2)获奖情况

1. 陕西省高校科学技术奖一等奖(2022年)(第1完成人);

2. 陕西省第六届研究生创新成果奖(2022年)(省级)一等奖1项;

3. “挑战杯课外学术科技竞赛(省级)二等奖2项、三等奖1项。

二、承担项目

1)科研项目

1. 国家自然科学基金,面上项目,22271178,仿生一维通道电负框架不对称Janus膜可控制备及离子传导性能研究,2023.01-2026.12,在研,主持;

2. 国家自然科学基金,青年项目,22001156,双催化中心-杂化沸石型咪唑框架的设计合成及电催化性能研究,2021.01-2023.12,在研,主持;

3. 陕西省青年科技新星(人才项目),2023KJXX-045,机械力杂化沸石多孔框架合成新策略,2023.01-2024.12,在研,主持;

4. 陕西省教育厅科学研究计划-服务地方专项,23JC007,无机填料改性聚醚醚酮复合材料的性能及应用研究,2023.01-2024.12,在研,主持;

5. 陕西省高校科协青年人才托举计划(人才项目),20210602,杂化沸石型咪唑框架及其衍生微纳材料的结构及功能设计,2022.01-2023.12,在研,主持;

6. 西安市科技计划项目,2022GXFW0011,杂化无机材料改性聚醚醚酮聚合物的导热增韧研究,2022.07-2024.06,在研,主持;

7. 结构化学国家重点实验室科学基金,20180024,以电催化为功能导向的[MFs@MOFs]复合材料电化学分步组装机理研究,2018.01-2020.12,已结题,主持;

8. 中国科学院煤制乙二醇及相关技术重点实验室基金,201801,针对煤制乙二醇相关技术的泡沫金属@金属有机框架多相催化剂的组装机理研究,2018.01-2020.12,已结题,主持;

9. 合成与天然功能分子化学教育部重点实验室开放基金,以客体识别和分离为导向的柔性金属羧酸多孔骨架材料的合成,2016.12-2018.12,已结题,主持;

10. 陕西省科技厅自然科学基础研究计划,2017JQ2021,电化学法制备新型泡沫金属-功能配合物复合材料及其电催化研究,2017.01-2018.12,已结题,主持;

11. 陕西省教育厅专项科研计划项目,16JK1108,以客体分子识别分离为导向的多孔金属-有机配位聚合物的合成研究,2016.01-2017.12,已结题,主持。

2)横向项目

1. 专利转让,关于金属碳复合材料等叁个相关专利转让,西安英利科电气科技有限公司,30万元,2023.06-2024.12

2. 技术开发,钠离子电池电极材料关键技术研发,上海领钫新能源科技有限公司,10万元,2022.09-2027.9

3. 专利转让,一种钙钛矿薄膜电池的制备方法,陕西凌峰致新能源科技有限公司,2万元,2022.05.18

3)教学项目

1. 陕西省高等教育学会高等教育科学研究项目,XGH21102,新工科背景下化工专业特色创新人才培养机制构建与实践,2021.10-2023.10,结题,主持;

2. 陕西科技大学研究生教育教学改革研究项目,JG2022Y02,省属地方高校研究生教育内部质量保障评价体系的探索与研究,2023.01-2024.10,在研,主持;

3. 陕西科技大学实践教学线上线下混合专项教改项目,测试表征技术实训线上线下混和教学改革,2020.06-2021.01,结题,主持。

4. 陕西省研究生教育综合改革研究与实践项目(重点项目),YJSZG2023084,地方行业特色大学“两融合一协同”本硕博贯通式人才培养模式的研究与实践,2023.03-2025.03,在研,参与。

三、会议报告

1. 第十一届先进陶瓷国际研讨会,昆明,分会邀请报告,2019527

2. 第一届电磁波吸收材料大会,上海,邀请报告,2020105

3. 中国化学会第三届菁青论坛,大连,分会邀请报告,20201122

4. 分子化学国际前沿论坛,西安,邀请报告,20201211

5. 中国化学会第32届学术年会,第36分会: 多孔功能材料,珠海,邀请口头报告,2021420

6. 第二届全国电磁功能材料会议,南京,邀请报告,2021627

7. 中国化学会第五届菁青论坛,银川,分会邀请报告,202272

8. 第三届全国电磁功能材料会议,洛阳,邀请报告,2023325

9. 中国化学会第十一届晶态材料化学前沿论坛,井冈山,邀请报告,2023422

10. 第二届全国超材料大会,南京,分会邀请报告,2023514

11. 中国化学会第九届全国多酸化学学术研讨会暨第五届全国有机多孔材料学术研讨会,长春,邀请报告,2023526

12. 中国化学会第33届学术年会-41分会:多孔材料,青岛,邀请报告,2023617

13. 第十一届先进纤维与聚合物材料国际会议(ICAFPM2023-K分会,上海,邀请报告,20231021

14. 中国化学会2023 无机化学化工学术研讨会,开封,邀请报告,20231023

15. 中国化学会第二届能源化学青年论坛,成都,邀请报告,20231029

16. 《国家科学评论》化学与材料科学前沿论坛,扬州,主题报告,20231112

17. 首届新能源材料创新发展论坛,西安,邀请报告,20231118

18. 电磁波吸收材料青年学者论坛,盐城,邀请报告,2023123


四、代表研究论文

* 2024

1. Y. Kang, J. Tang, J. Chen, M. Song, W. Wang, T. Liu, W. Huang*, “Appropriate dressing” non-fluorination strategy: Dopamine coating CuSiF6 framework derived F-rich SiC/CuF2@C electromagnetic wave absorber, Carbon, 2024, 218: 118690. (2022影响因子:10.9)

* 2023

1. W. Huang*, S. Wang, X. Zhang, Y. Kang, H. Zhang*, N. Deng, Y. Liang, H. Pang*, Universal F4-modified Strategy on Metal Organic Framework to Chemical Stabilize PVDF-HFP as Quasi-Solid-State Electrolyte, Advanced Materials, 2023, 202310147. 2022影响因子:29.4

2. X. Zhang, Q. Su*, G. Du, B. Xu, S. Wang, Z. Chen, L. Wang, W. Huang*, H. Pang*, Stabilizing Solid-state Lithium Metal Batteries through In Situ Generated Janus-heterarchical LiF-rich SEI in Ionic Liquid Confined 3D MOF/Polymer Membranes, Angew Chem. Int. Ed., 2023, 62(39), e202304947. 2022影响因子:16.6

3. W. Huang, C. Su, C. Zhu, T. Bo, S. Zuo, W. Zhou, Y. Ren, Y. Zhang, J. Zhang, M. Rueping*, H. Zhang*, Isolated Electron Trap-Induced Charge Accumulation for Efficient Photocatalytic Hydrogen Production, Angew Chem., Int. Ed., 2023, 62 (25), e202304634.VIP paper)(2022影响因子:16.6

4. W. Huang,* X. Zhang, J. Chen, Q. Qiu, Y. Kang, K. Pei, S. Zuo, and R. Che*, High-density Nanopore Confined Vortical Dipoles and Magnetic Domains on Hierarchical Macro/Meso/Micro/Nano Porous Ultra-Light Graphited Carbon for Adsorbing Electromagnetic Wave, Advanced Science, 2023, 2303217. 2022影响因子:15.1

5. X. Zhang, W. Huang*, L. Yu, M. García-Melchor, D. Wang, L. Zhi* and H. Zhang* Enabling Heterogeneous Catalysis to Achieve Carbon Neutrality: Directional Catalytic Conversion of CO2 into Carboxylic Acids, Carbon Energy, 2023, e362. 2022影响因子:20.5

6. M. Sun, W. Cao, P. Zhu, Z. Xiong, C. Chen, J. Shu*, W. Huang*, Fan Wu*, Thermally tailoring magnetic molecular sponges through self-propagating combustion to tune magnetic-dielectric synergy towards high-efficiency microwave absorption and Attenuation, Advanced Composites and Hybrid Materials, 2023, 6: 54. 2022影响因子:20.1

7. H. Ruan, L. Zhang*, S. Li, K. Wang, W. Huang, S. Guo*, Carbon Polyhedra Encapsulated Si Derived from Co-Mo Bimetal MOFs as Anode Materials for Lithium-Ion Batteries, Journal of Materials Science & Technology, 2023, 159: 91–98. 2022影响因子:10.9

8. Y. Ren, W. Huang*, M.A. Alsuhami, H. Zhang, J. Ye*, Subsurface engineering for efficient photocatalytic water splitting, Chem Catalysis, 2023, 3(8), 100707. 2022影响因子:9.4

9. Y. Li, X. Jin*, Y. Ma, L. Ma, J Liu, P. Zhu, Z. Deng, H. Zhou, W Chen, W. Huang*, Functional decoration on a regenerable bifunctional porous covalent organic framework probe for the rapid detection and adsorption of copper ions, Rare Metals, 10.1007/s12598-023-02476-w. 2022影响因子:8.8

10. Y. Zhang, J. Chen, F. Razq, C. Su, X. Hou, W. Huang*, and H. Zhang*, Polyoxometalate-incorporated host-guest framework derived layered double hydroxide composites for high-performance hybrid supercapacitor, Chinese Journal of Chemistry, 2023, 41, 75-82. 杂志封面Outside Front Cover)(2022影响因子:5.4

11. X. Yang, W. Gao, J. Chen, X. Lu, D. Yang, Y. Kang, Q. Liu, Y. Qing, and W. Huang*, Co-Ni Electromagnetic Coupling in Hollow Mo2C/NC Sphere for Enhancing Electromagnetic Wave Absorbing Performance, Chinese Journal of Chemistry, 2023, 41, 64-74. (邀稿,2022影响因子:5.4

12. J. Gu, Q. An, J. Chen, Y. He, W. Huang*, Preparation and Responsive Performance study of AuNPs/RGO-MoO2/GCE Composite Modified Electrodes based on its High Sensitivity to Acetaminophen and Dopamine, Inorganic Chemistry Communications, 2023, 147, 110282. 2022影响因子:3.8

13. Y. Kang, X. Sun, Y. Wang, Y. Zhang, W. Huang*, Design and Synthesis of Copper-Based Simulated Enzyme Induced by Nitrogen Oxidation Ligand and Study of Its Activity. Chinese Journal of Structural Chemistry, 2023, 42, 100046.(邀稿,2022影响因子:2.2

* 2022

1. W. Huang*, Q. Qiu, X. Yang, S. Zuo, J. Bai, H. Zhang*, K. Pei and R. Che*, Ultrahigh Density of Atomic CoFe-Electron Synergy in Noncontinuous Carbon Matrix for Highly Efficient Magnetic Wave Adsorption. Nano-Micro Letters, 2022, 14(1): 96.2022影响因子:26.6

2. W. Huang, T. Bo, S. Zuo, Y. Wang, J. Chen, S. Ould‐Chikh, Y. Li, W. Zhou*, J. Zhang, H. Zhang*, Surface decorated Ni sites for superior photocatalytic hydrogen production, Susmat, 2022, 2(4) 466-475.(邀稿,2022影响因子:28.4

3. C. Feng, Y. Ren, F. Razq, W. Huang*, H. Zhang*, An innovative and ingenious strategy to construct single-atom catalyst for photocatalytic methane conversion, Matter, 2022, 5, 3086–3111. 2022影响因子:18.9

4. W. Huang*, W. Gao, S. Zuo, L. Zhang, K. Pei, P. Liu and R. Che*, and H. Zhang*, Hollow MoC/NC Sphere for Electromagnetic Wave Attenuation: Direct Observation of Interfacial Polarization on Nanoscale Hetero-interfaces. Journal of Materials Chemistry A, 2022, 10: 1290-1298.杂志封面Outside Front Cover)(高被引论文)(2022影响因子:11.9

5. P. Li, Z. He, X. Li, W. Huang*, and X. Lu*, Fullerene-Intercalated Graphitic Carbon Nitride as a High-Performance Anode Material for Sodium Ion Batteries. Energy & Environmental Materials, 2022, 5: 608–616.(邀稿,2022影响因子:15

6. W. Huang*, J. Chen, W. Gao, L. Wang, P. Liu*, Y. Zhang, Z. Yin, Y. Yang, “Host-Guest” crystalline Mo/Co-framework induced phase-conversion of MoCx in carbon hybrids for regulating absorption of electromagnetic wave, Carbon, 2022, 197: 129-140. 2022影响因子:10.9

7. W. Huang*, S. Wang, X. Yang, X. Zhang, Y. Zhang, K. Pei, R. Che*, Temperature induced transformation of Co@C nanoparticle in 3D hierarchical core-shell nanofiber network for enhanced electromagnetic wave adsorption, Carbon, 2022, 195: 44-56.2022影响因子:10.9

8. Y. Zhang, J. Chen, C. Su, K. Chen, H. Zhang, Y. Yang, W. Huang*, Enhanced ionic diffusion interface in hierarchical metal-organic framework@layered double hydroxide for high-performance hybrid supercapacitors, Nano Research, 2022, 15(10), 8983-8990. 2022影响因子:9.9

9. W. Huang*, Z. Chen, H. Wang, L. Wang, H. Zhang, and H. Wang, Sponge-like hierarchical porous carbon decorated by Fe atoms for high-efficient sodium storage and diffusion. Chemical Communications, 2022, 58(28), 4496-4499.2022影响因子:4.9

10. Y. Zhang, C. Su, J. Chen, W. Huang* and R. Lou, Recent progress of transition metal-based biomass-derived carbon composites for supercapacitor, Rare Metals, 2022, 10.1007/s12598-022-02142-7. 2022影响因子:8.8

11. Z. He, Z. Zhou, P. Wei, T. Xu, J. Han, K. Huang, K. Guo*, W. Huang*, T. Akasaka, X. Lu*, Fullerene-Derived Porous and Defective N-Doped Carbon Nanosheets as Advanced Trifunctional Metal-Free Electrocatalysts, Chemistry - An Asian Journal, 2022, 202200994. 2022影响因子:4.1

12. L. Bao, T. Xu, K. Guo, W. Huang, X. Lu*, Supramolecular Engineering of Crystalline Fullerene Micro-/Nano-Architectures, Advanced Materials, 2022, 2200189.2022影响因子:29.4

* 2021

1. W. Huang*, X. Li, X. Yang*, H. Zhang, P. Liu, Y. Ma, and X. Lu, CeO2-embedded mesoporous CoS/MoS2 as highly efficient and robust oxygen evolution electrocatalyst. Chemical Engineering Journal, 2021, 420: 127595.2022影响因子:15.1

2. W. Huang*, X. Li, X. Yang*, X. Zhang, H. Wang, H. Wang, The recent progress and perspectives on the metal- and covalent- organic frameworks based solid-state electrolytes for lithium-ion batteries. Materials Chemistry Frontiers, 2021, 5 (9): 3593-3613.(邀稿,2022影响因子:7.0

3. W. Huang*, X. Li, X. Yang, H. Zhang, F. Wang, J. Zhang*. High-Efficient Electrocatalyst for Overall Water Splitting: Mesoporous CoS/MoS2 with Hetero-Interface. Chemical Communications, 2021, 57: 4847-4850.2022影响因子:4.9

4. W. Huang*, Q. Li, D. Yu, Y. Tang, D. Lin, F. Wang*, J. Zhang*, Hybrid Zeolitic Imidazolate Frameworks for Promoting Electrocatalytic Oxygen Evolution via a Dual-Site Relay Mechanism. Inorganic Chemistry, 2021, 60(5): 3074-3081.2022影响因子:4.6

5. X. Yang, Y. Yan, W. Wang, Z. Hao, W. Zhang*, W. Huang*, Y. Wang, A 2-Fold Interpenetrated Nitrogen-Rich Metal–Organic Framework: Dye Adsorption and CO2 Capture and Conversion. Inorganic Chemistry. 2021, 60(5): 3156-31642022影响因子:4.6

6. W. Huang*, X. X. Zhang and Y. N. Zhao, Recent progress and perspectives on the structural design on metal-organic zeolite (MOZ) frameworks. Dalton Transactions, 2021, 50: 15-28.(邀稿,2022影响因子:4.0

7. Y. Zhang, J. Chen, C. Su, W. Huang*, A multifunctional cadmium-based metal-organic framework from a tricarboxylate ligand showing sensing and sensitization. Journal of Solid State Chemistry, 2021, 302: 122407.2022影响因子:3.3

8. C. Zuo, F. Zhao, Z. Tang, L. Zhang, Q. Niu, G. Cao, L. Zhao, W. Huang*, and P. Zhao*, Bi2O3 gated Fe3O4@ZrO2 core/shell drug delivery system for chemo/ionic synergistic therapeutics. Journal of Solid State Chemistry, 2021, 303: 122489.2022影响因子:3.3

* 2020

1. P. Liu*, S. Gao, Y. Wang, Y. Huang, W. He, W. Huang, J. Luo, Carbon nanocages with N-doped carbon inner shell and Co/N-doped carbon outer shell as electromagnetic wave absorption materials, Chemical Engineering Journal, 2020, 381: 122653. 高被引论文)(2022影响因子:15.1

2. T. Xu, W. Shen, W. Huang*, and X. Lu*. Fullerene Micro/Nanostructures: Controlled Synthesis and Energy Applications. Materials Today Nano, 2020, 11: 100081.(邀稿,2022影响因子:10.3

3. W. Huang*, X. Zhang, Y. Zhao, J. Zhang, and P. Liu*, Hollow N-doped carbon polyhedrons embedded Co and Mo2C nanoparticles for high-efficiency and wideband microwave absorption. Carbon, 2020, 167: 19-30. 高被引论文,热点论文)(2022影响因子:10.9

4. P. Liu*, S. Gao, Y. Wang, F. Zhou, Y. Huang, W. Huang*, and N. Chang, Core-shell Ni@C encapsulated by N-doped carbon derived from nickel-organic polymer coordination composites with enhanced microwave absorption. Carbon, 2020, 170: 503-516.高被引论文,热点论文)(2022影响因子:10.9

5. P. Liu*, S. Gao, W. Huang*, J. Ren, D. Yu, and W. He, Hybrid zeolite imidazolate framework derived N-implanted carbon polyhedrons with tunable heterogeneous interfaces for strong wideband microwave attenuation. Carbon, 2020, 159: 83-93. 高被引论文)(2022影响因子:10.9

6. W. Huang*, X. Li, D. Yu, X. Yang, L. Wang, P. Liu, and J. Zhang, CoMo-bimetallic N-doped porous carbon materials embedded with highly dispersed Pt nanoparticles as pH-universal hydrogen evolution reaction electrocatalyst. Nanoscale, 2020, 12: 19804-19813.2022影响因子:6.7

7. T. Xu, D. Yu, Z. Du, W. Huang*, and X. Lu, Two-Dimensional Mesoporous Carbon Materials Derived from Fullerene Microsheets for Energy Applications. Chemistry-A European Journal, 2020, 26: 10811.2022影响因子:4.3

8. K. Zhong, R. Yang, W. Zhang*, Y. Yan, X. Gou, W. Huang*, and Y.-Y. Wang, Zeolitic Metal Cluster Carboxylic Framework for Selective Carbon Dioxide Chemical Fixation through the Superlarge Cage. Inorganic Chemistry, 2020, 59: 3912-3918.2022影响因子:4.6

* 2019

1. P. Liu*, J. Yan, Z. Guang, Y. Huang, X. Li, W. Huang, Recent advancements of polyaniline-based nanocomposites for supercapacitors, Journal of Power Sources, 2019, 424: 108-130.高被引论文)(2022影响因子:9.2

2. G. Fei, Y. Wang, H. Wang, Y. Ma, Q. Guo, W. Huang, D. Yang, Y. Shao, Y. Ni, Fabrication of Bacterial Cellulose/Polyaniline Nanocomposite Paper with Excellent Conductivity, Strength, and Flexibility, ACS Sustainable Chemistry & Engineering, 2019, 7: 8215-8225.2022影响因子:8.4

3. S. Hu, P. Zhao, W. Shen, P. Yu, W. Huang*, M. Ehara, Y. Xie, T. Akasaka, and X. Lu*, Crystallographic characterization of Er3N@C2n (2n = 80, 82, 84, 88): the importance of a planar Er3N cluster. Nanoscale, 2019, 11(28): 13415-13422.2022影响因子:6.7

4. W. Huang*, J. Ren, Y. Yang, X. Li, Q. Wang, N. Jiang, J. Yu, F. Wang, and J. Zhang, Water-Stable Metal-Organic Frameworks with Selective Sensing on Fe(3+) and Nitroaromatic Explosives, and Stimuli-Responsive Luminescence on Lanthanide Encapsulation. Inorganic Chemistry, 2019, 58: 1481-1491.高被引论文)(2022影响因子:4.6

5. S. Hu, T. Liu, W. Shen, Z. Slanina, T. Akasaka, Y. Xie, F. Uhlik, W. Huang*, and X. Lu*, Isolation and Structural Characterization of Er@C2v(9)-C82 and Er@Cs(6)-C82: Regioselective Dimerization of a Pristine Endohedral Metallofullerene Induced by Cage Symmetry. Inorganic Chemistry, 2019, 58(3): 2177-2182.2022影响因子:4.6

6. X. Yang, D. Yu, X. Li, K. Zhang, and W. Huang*, Two 2D-MOFs based on two flexible ligands: structural control and fluorescence sensing on FeIII cation and CrVI-containing anions. Journal of Solid State Chemistry, 2019, 272: 166-172.2022影响因子:3.3

* 2018之前

1. Z. Du, N. Jannatun, D. Yu, J. Ren, W. Huang*, and X. Lu*, C60-Decorated nickel-cobalt phosphide as an efficient and robust electrocatalyst for hydrogen evolution reaction. Nanoscale, 2018, 10(48): 23070-23079.2022影响因子:6.7

2. W. Shen, L. Bao, S. Hu, X. Gao, Y. Xie, X. Gao, W. Huang*, and X. Lu*, Isolation and Crystallographic Characterization of Lu3N@C2n (2n=80-88): Cage Selection by Cluster Size. Chemistry-A European Journal, 2018, 24(62): 16692-16698.2022影响因子:4.1

3. Y.-M. Ma, T. Liu, and W. Huang*, Synthesis of a 3D lanthanum(III) MOFs as a multi-chemosensor to Cr(VI)-containing anion and Fe(III) cation based on a flexible ligand. Journal of Solid State Chemistry, 2018, 258: 176-180.2022影响因子:3.3

4. W. Huang*, J. Li, L. Gao, Y. Wang, S.-Y. Liu, M. Jiang, T. Liu, and Y. Wang, The influence of structural isomerism on fluorescence and organic dye selective adsorption in two complexes based on flexible ligands. Dalton Transactions, 2016, 45(38): 15060-15066.2022影响因子:4

5. W. Huang, G. Yang, J. Chen, X. Chen, C. Zhang, Y. Wang*, and Q. Shi, Solvent Influence on Sizes of Channels in Three New Co(II) Complexes, Exhibiting an Active Replaceable Coordinated Site. Crystal Growth & Design, 2012, 13(1): 66-73.2022影响因子:3.8

6. W. Huang*, J. Li, T. Liu, L. Gao, M. Jiang, Y. Zhang, and Y. Wang*, A stable 3D porous coordination polymer as multi-chemosensor to Cr(iv) anion and Fe(iii) cation and its selective adsorption of malachite green oxalate dye. RSC Advances, 2015, 5(118): 97127-97132.2022影响因子:3.9

7. W. Huang, X. Luan, X. Zhou, J. Chen, Y. Wang*, and Q. Shi, The influence of ligand configuration, solvent size and solvent polarity on the porous shape and void volume in a series of isomeric or isomorphic porous MOFs. CrystEngComm, 2013, 15(47): 10389-10398.2022影响因子:3.1

8. W. Huang*, Y. Wang, Y. Zhang, T. Liu, S. Liu, Y. Wang, L. Pang, Y. Kang, and J. Li, Selection of rigid N-donor ligands influence the dimensions and luminescences of five new Cd(II) coordination polymers, based on a flexible tricarboxylic acid. Inorganica Chimica Acta, 2015, 433: 52-62.2022影响因子:2.8

9. W. Huang, L. Hou, B. Liu, L. Cui, Y. Wang*, and Q. Shi, Two novel interpenetrating MOFs constructed from a derivative of phenanthroline and a V-shaped flexible dicarboxylate ligand contains unique chiral structure. Inorganica Chimica Acta, 2012, 382: 13-18.2022影响因子:2.8

10. W. Huang*, T. Liu, Y. Wang, S. Liu, J. Li, H. Yin, Y. Zhang, Syntheses, Structures, and Properties of Three New Polymers Based on Flexible and Rigid Ligands. Chinese Journal of Structural Chemistry, 2016, 35: 621-632.2022影响因子:2.2



五、发明专利

1. 黄文欢,张亚男,杨雨豪,赵宁,碱土金属掺杂的纳米钛酸铋及其制备方法,发明专利,2017-5-24ZL201610075235.6

2. 黄文欢,马养民,刘潼,杨雨豪,康祎璠,张亚男,一种钙钛矿薄膜电池的制备方法,发明专利,2017-11-14ZL201710469082.8(已转让)

3. 黄文欢,马养民,张亚男,殷政,康祎璠,刘潼,一种柔性TiO2阻变存储器阵列的制备方法,发明专利,2019-6-25ZL201710564097.2

4. 黄文欢,王顺,杨秀芳,张亚男,杨雨豪,殷政,硼掺杂钴镍柔性电极材料及其制备方法,发明专利,2023-9-19ZL202210419328.1

5. 张亚男,成晶,张鹏,黄文欢,张昱,模板剂导向合成的多孔配位聚合物机器制备与应用,发明专利,2020-11-27ZL201710742521.8

6. 李子涵,张亚男,陈俊雷,黄文欢,一种“Co9S8”量子点原位嵌入CoNi-LDH电极材料制备方法,发明专利,ZL202210338205.5

7. 张亚男,徐诺,杨秀芳,黄文欢,康祎璠,殷政,杨冬,基于MOFs衍生的发泡吸波材料的制备方法,发明专利,ZL202211505193.7

8. 黄文欢,朱鹏元,杨雨豪,张亚男,康祎璠,赵宁,钴铁负载多孔碳海绵吸波材料的原位燃烧合成方法,发明专利,2022114712398(实审)(已转让)

9. 黄文欢,宋明,康祎璠,张亚男,杨雨豪,赵宁,铜掺杂碳化硅复合吸波材料的制备方法,发明专利,202211587781X(实审)(已转让)

10. 黄文欢,王维,康祎璠,张亚男,杨雨豪,徐诺,宋明,朱鹏元,CeO2-Co电磁波吸收材料的制备方法,发明专利,202310264974X(已转让)

11. 黄文欢,王顺,杨秀芳,张亚男,康祎璠,殷政,杨冬,氟修饰准固态混合基质锂电池隔膜及锂电池制备方法,发明专利,202210823437X(实审)

12. 黄文欢,陈卓,张亚男,曹丽慧,杨雨豪,殷政,硅碳负极储能材料及其制备方法,发明专利,2022108192733(实审)

13. 黄文欢,侯雪晗,张亚男,康祎璠,杨雨豪,殷政,基于磷基阴离子框架聚合物隔膜涂层的锂硫电池制备方法,发明专利,2022115540064(实审)

14. 黄文欢,王顺,杨秀芳,张亚男,康祎璠,陈卓,侯雪晗,吴钰璐,羟基化COF柔性准固态锂电池隔膜及锂电池制备方法,发明专利,2023102676713

15. 黄文欢,陈卓,杨秀芳,曹丽慧,殷政,王顺,侯雪晗,吴钰璐,硅掺杂海绵网状碳的负极储能材料及其制备方法,发明专利,2023102650319

16. 黄文欢,吴钰璐,杨秀芳,王顺,张亚男,殷政,曹丽慧,杨冬,NH2-氢键交联型准固态混合基锂离子电池及隔膜制备方法,发明专利,2023102672341

17. 康祎璠,唐金璐,黄文欢,张亚男,曹丽慧,殷政,杨冬,磁性金属负载的阴离子框架吸波材料的制备方法,发明专利,2022115061017(实审)

18. 康祎璠,王维,黄文欢,张亚男,赵宁,杨雨豪,屈彦宁,五元高熵合金高分散负载碳海绵吸波材料的制备方法,发明专利,2022117423737(实审)

19. 张亚男,吴钰璐,杨秀芳,黄文欢,康祎璠,殷政,杨冬,银负载碳化钼复合吸波材料及其光诱导自还原制备方法,发明专利,2022115056964(实审)

20. 黄文欢,陈瑞,张星星,张亚男,康祎璠,王顺,基于碘基金属有机框架改性隔膜涂层锂硫电池制备方法,发明专利,2023114030586

21. 黄文欢,石洋,侯雪晗,张星星,田园园,张亚男,基于羟基氨基化共价有机框架隔膜的锂硫电池制备方法,发明专利,2023114027117

22. 黄文欢,崔沛玉,陈卓,康祎璠,张星星,张亚男,铁掺杂富氮多孔碳钠离子电池负极材料及电池的制备方法,发明专利,2023114053431

23. 黄文欢,王妙,刘潼,康祎璠,宋明,王冲,含能多氮唑框架衍生多孔柔性电磁波屏蔽薄膜的制备方法,发明专利,2023114381686

24. 康祎璠,王轶琛,宋明, 黄文欢,张亚男,刘潼,银掺杂钴基硼咪唑多孔碳吸波材料的制备方法,发明专利,2023114548561

25. 张亚男,王博锟, 黄文欢,刘潼,康祎璠,宋明,六元高熵单原子富氮多孔光热材料的制备方法,发明专利,2023114366417












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