厦门大学材料学院导师介绍:黄雅熙
作者:聚创厦大考研网-小厦老师
点击量: 760
发布时间: 2018-09-04 17:06
微信号: H17720740258
姓名:黄雅熙
职称:副教授
电话:13950175872
传真:0592-2183937
邮箱:yaxihuang@xmu.edu.cn
个人简历
工作经历:
2009.06-2009.09德国马普协会德累斯顿固体化学物理研究所合作研究
2008.06-2008.09德国马普协会德累斯顿固体化学物理研究所合作研究
教育经历:
2004.11-2007.10德国马普协会德累斯顿固体化学物理研究所博士后
2001.05-2004.10德国马普协会德累斯顿固体化学物理研究所博士
2000.09-2001.03德国马普协会德累斯顿固体化学物理研究所合作研究
1998.09-2001.04厦门大学无机化学专业硕士
1994.09-1998.07厦门大学材料化学专业学士
1998.09-2001.04厦门大学无机化学专业硕士
1994.09-1998.07厦门大学材料化学专业学士
研究领域
主要研究方向为多孔材料(锗磷酸盐、磷酸盐及硼磷酸盐)的合成、结构与性能表征,硼磷酸盐/环氧树脂阻燃材料,生物矿化等。 主讲课程包括“物理化学”、“钻石与钻石鉴赏”、“宝石鉴赏”、“基础化学实验一”等
主要科研成果
主要从事多孔材料(锗磷酸盐、磷酸盐及硼磷酸盐)的合成、结构及性能表征和生物矿化的研究。已经先后在Angew. Chem. Int. Ed., Chem. Mater.,Inorg. Chem.,Chem. Eur. J., J. Solid State Chem.等SCI收录的具有较高学术影响力的期刊上发表60多篇学术论文。正在主持一项国家自然科学基金青年项目和一项中央高校基本科研业务费项目,正在参与一项国家自然科学基金重点项目和一项国家科技部“973”计划子课题。主持过一项福建省自然科学基金项目和一项教育部留学回国基金项目。
主要代表学术论著与论文
1. Y.-X. Huang,* B. Liu, L. Wen, X. Zhang, J. Lin, C.-Z. Huang, W. Sun, J.-X. Mi, R.-C. Zhuang, J.-T. Zhao, Structural Assembly from Phosphate to Germanophosphate by Applying Germanate as a Binder, Inorg. Chem. 2013, 52, 9169-9171.
2. Z.-B. Hu, C.-X. Wang, C.-Q. Tong, Y.-X. Huang, Y.-M. Pan, J.-X. Mi, Crystal Structure and Magnetic Property of Synthetic Gengenbachite, KH8(Fe2.66Al0.34)(PO4)6·6H2O, Can. Miner. 2013, 51, 223-232.
3. Y.-X. Huang,* X. Zhang, X. Huang, W. Schnelle, J. Lin, J.-X. Mi, M.-B. Tang, J.-T. Zhao, Two Isotypic Transition Metal Germanophosphates MII4(H2O)4[Ge(OH)2(HPO4)2(PO4)2] (MII = Fe, Co): Synthesis, Structure,.Mossbauer Spectroscopy, and Magnetic Properties, Inorg. Chem. 2012, 51, 3316-3323.
4. W. Sun, Y.-X. Huang, Y. Pan, J.-X. Mi, Investigation on pseudosymmetry, twinning and disorder in crystal structure determinations: Ba(H2O)MIII2[PO3(OH)]4 (M=Fe, V) as examples, J. Solid State Chem. 2012, 187, 89-96.
5. P. Simon, W. Carrillo-Cabrera, Y.-X. Huang, J. Buder, H. Borrmann, R. Cardoso-Gil, E. Rosseeva, Y. Yarin, T. Zahnert, R. Kniep, Structural Relationship between Calcite-Gelatine Composites and Biogenic (Human) Otoconia, Eur. J. Inorg. Chem. 2011, 35, 5370-5377.
6.W. Sun, Y.-X. Huang, Z. Li, Y. Pan, J.-X. Mi, Hydrothermal Synthesis and Single-Crystal X-Ray Structure Refinement of Three Borates: Sibirskite, Parasibirskite and Priceite, Can. Miner. 2011, 49 (3), 823-834.Y.
7. Zhou, S. Hoffmann, Y.-X. Huang, Y. Prots, W. Schnelle, P. W. Menezes, W. Carrillo-Cabrera, J.
Sichelschmidt, J.-X. Mi, R. Kniep, K3Ln[OB(OH)2]2[HOPO3]2 (Ln=Yb, Lu): Layered rare-earth dihydrogen borate monohydrogen phosphates, J. Solid State Chem. 2011, 184, 1517-1522.
8. Y. Zhou, S. Hoffmann, P. W. Menezes, W. Carrillo-Cabrera, Y.-X. Huang, L. Vasylechko, M. Schmidt, Y. Prots, J.-F. Deng, J.-X. Mi, R. Kniep, Nanoporous titanium borophosphates with rigid gainesite-type framework structure, Chem. Comm. 2011, 47, 11695-11696.
9. H.-Y. Sun, Y. Zhou, Y.-X. Huang, W. Sun, J.-X. Mi, Synthesis, Crystal Structure, Vibrational Spectroscopy, and Thermal Behavior of Y[B2O3(OH)]3. Chinese J. Struct. Chem. 2010, 29, 1387-1393.
10. H.-Y. Sun, W. Sun, Y.-X. Huang, J.-X. Mi, Low Temperature Flux Synthesis and Characterizations of a New Layered Barium Borate BaB8O11(OH)4. Z. Anorg. Allg. Chem. 2010, 636 (6), 977-981.
11. Y. Zhou, Y.-X. Huang, Y. Pan, J.-X. Mi, Single-crystal microtubes of a novel apatite-type compound, Na5Bi5(PO4)6(F,OH)2 with well-faceted hexagonal cross sections, CrystEngComm, 2009, 11, 1863-1867.
12. Y.-X. Huang, W. Schnelle, H. Zhang, H. Borrmann, R. Kniep, Hydrothermal synthesis, crystal structure, and magnetic properties of a new iron(III) borophosphate: (C3H12N2)Fe6(H2O)4[B4P8O32(OH)8]. J. Solid State Chem. 2009, 182, 920-924.
13. Y.-X. Huang, J. Buder, Yu. Prots, R. Cardoso-Gil, W. Carrillo-Cabrera, P. Simon, R. Kniep, Shape Development and Structure of a Complex (Otoconia-like?) Calcite-Gelatine Composite. Angew. Chem. Int. Ed., 2008, 47, 8280-8284.
14. Y.-X. Huang, Yu. Prots, R. Kniep, ZnBPO4(OH)2: A novel zinc borophosphate with the moganite topology. Chem. Eur. J., 2008, 14, 1757-1761.
15. Y.-X. Huang, Yu. Prots, W. Schnelle, R. Kniep, A new borophosphate chain anion in an organo-templated iron(III) borophosphate: synthesis, crystal structure and magnetic properties of (C4H12N2)3FeIII6(H2O)4[B6P12O50(OH)2]·2H2O. Sci. Tech. Adv. Mater. 2007, 8, 399-405.
16.B. Ewald, Y.-X. Huang, R. Kniep, Structural Chemistry of Borophosphates, Metalloborophosphates, and Related Compounds. Z. Anorg. Allg. Chem. 2007, 633, 1517-1540. (Review)
17. Y.-X. Huang, O. Hochrein, D. Zahn, Yu. Prots, H. Borrmann, R. Kniep, Control of channel shapes in a manganese-borophosphate framework: the influence of size and shape of organic template cations. Chem. Eur. J. 2007, 13, 1737-1745. (2007-06)
18. Y.-X. Huang, B. Ewald, W. Schnelle, Yu. Prots, R. Kniep, Chirality and magnetism in a novel series of isotypic borophosphates: MII[BPO4(OH)2] (MII = Mn, Fe, Co). Inorg. Chem. 2006, 45, 7578-7580.
19. Y.-X. Huang, G. Sch?fer, W. Carrillo-Cabrera, H. Borrmann, R. Cardoso-Gil, R. Kniep, (C6H14N2){Zn[ZnB2P4O15(OH)2]·(C6H13N2)Cl}: A New Templated Zincoborophosphate. Chem. Mater. 2003, 15, 4930-4935.
20. Y.-X. Huang, G. Sch?fer, W. Carrillo-Cabrera, R. Cardoso, W. Schnelle, J.-T. Zhao, R. Kniep: Open-Framework Borophosphates: (NH4)0.4FeII0.55FeIII0.5(H2O)2[BP2O8]·0.6H2O and NH4FeIII[BPO2O8(OH)]. Chem. Mater. 2001, 13, 4348-4354.
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