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工业催化—黄廷洪
[化学工程学院]  [手机版本]  [扫描分享]  发布时间:2018年5月21日
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基本情况:

黄廷洪,博士,副教授、硕士生导师。20146月在天津大学获化学工艺博士学位,先后参与三项国家自然基金的研究,主持一项天津大学 “优博基金、两项四川理工学院人才引进项目、两项四川省教育厅重点项目、一项四川省科技厅应用基础项目,一项材料腐蚀与防护四川省重点实验室开放基金和一项精细化工助剂及表面活性剂四川省高校重点实验室开放基金。迄今在国内外学术杂志上发表论文30余篇,部分在《Chem. Eng. Sci.》、CrystEngComm》、《Dalton Trans.》、《Organometallics》、《J. Coord. Chem.》、《Aust. J. Chem.》、《Inorg. Chim. Acta》、《J. Mol. Struct.》、等重要刊物上发表,被SCI收录30余篇。先后被《J. Coord. Chem.J. Mol. Struct.》、Appl. Organomet. Chem.》、Inorg. Chem》、《Chem.Eng .JSaudi Pharm. J.刊邀为审稿人。

研究方向:

a. OLED及其组件:主要从事功磷光配合物的设计合成、理论计算、发光性能以及器件组装应用研究。

b. 二维材料:主要从二维COF晶体材料的组装、生长、计算及应用研究。

c. 纳米团簇:主要从事铜、银、金、钯等纳米团簇的设计、合成、理论计算及性能研究。

d. 光、磁一体化 主要从事铁、钴、镍等配合物的组装及催化性能研究。

学习和工作经历:(从现在开始倒叙,直至大学阶段)

2018.3-至今, 四川轻化工大学,副教授,硕士生导师 

2014/7–2018.3,四川理工学院,讲师

2011/9 – 2014/6,天津大学,化学工艺,博士

2008/9 – 2011/6,广西师范大学,无机化学,硕士

2004/9 – 2008/6,绵阳师范学院,化学,学士

教学工作:

工程热力学与传热、专业外语、科技论文写作等。

主要科研项目

1. 四川省科技厅应用基础项目一项 

2. 四川省教育厅重点项目两项

3. 材料腐蚀与防护四川省重点实验室开放基金项目一项

课题组学生情况:

熊先炼,2014级本科生,2018年考入西南石油大学研究生。

李嘉栋,2014级本科生,2018年考入西南石油大学研究生。

赵彦超,2015级本科生,2019年考入中国石油大学研究生。

本课题组:常年招收吃苦耐劳、励志考研、勤奋刻苦的大一、大二学生(每届名额2名)。同时,欢迎具有吃苦耐劳、勤奋刻苦、努力上进的学生,报考本课题组的研究生。

主要论文与专著:

[1] T.-H. Huang*, Q.-L. Hu, F.-Z. Zhao, T.-C. Wu, Y. Lei, D. Zheng*, H. Yang, Synthesis, structural characterization, DFT studied and properties of Cu2+ complexes with the cage/ladder-like Cu4O4 cores. J. Mol. Struct., 2019, 127014.

[2] J. Hu*, T.-H. Huang*, Y. Zhang, B. Lu, H. Ye, B. Chen, H. Xia, C. Ji*, Enhanced deep-red emission from Mn4+/Mg2+ co-doped CaGdAlO4 phosphors for plant cultivation. Dalton Trans., 2019, 48, 2455-2466. 

[3] C. Ji*, T.-H. Huang*, Z. Huang, J. Wen*, W. Xie, X. Tian, T. Wu, H. He, Y. Peng, High thermal stability and colour saturation red-emitting Ba2AGe2O7: Eu3+ (A = Mg, Zn) phosphors for WLEDs. J. Lumin., 2019, 216, 116734.

[4] C. Ji*, Z. Huang, J. Wen, J. Zhang, X. Tian, H. He, L. Zhang, T.-H. Huang*, W. Xie*, Y. Peng, Blue-emitting Bi-doped double perovskite Gd2ZnTiO6 phosphor with near-ultraviolet excitation for warm white light-emitting diodes. J. Alloy. Compd., 2019, 788, 1127-1136.

[5] T.-H. Huang*, H. Yang, G. Yang , S.-L. Zhu, C.-L. Zhang , Synthesis, structural characterization and photoluminescent properties of copper(I) coordination polymers with extended C-Hπ and CNπ interactions, Inorg. Chim. Acta., 2017, 455, 1-8.

[6] T.-H. Huang*, H. Yang, S.-L. Zhu, B. Zhao, Y. Yang, synthesis, structures and fluorescent propertes of metal complexes based on polyphosphine ligands., 2017, 1127. 138-144. 

[7] T.-H. Huang*, J.-Q. Liu, H. Yang, B. Zhao, J.-P. Shang. Synthesis, structural characteisation, DFT Studies, and spectroscopic properties of copper(I) complexes with extended C-Hπ interactions. Aust. J. Chem., 2016, 69, 826-835.

[8] T.-H. Huang*, S.-L. Zhu, H. Yang, B. Zhao, Y. Yang, Synthesis, structural characterization and fluorescent properties of 3D copper (I) coordination polymers with extended ππ interactions, Chinese J. Inorg. Chem. (Wuji Huaxue Xuebao), 2016, 32(5), 871-878.

[9] T.-H. Huang*, H. Yang, C.-L. Zhang, G. Yang, Y. Yang, Synthesis, structural characterization, spectroscopic properties of a copper(I) complex containing tri-phosphine ligand with C-H∙∙∙π and π∙∙∙π interactions, Chemistry online, 2016, 79(7), 680-683. 

[10] T.-H. Huang*, H. Yang, G. Yang, Y. Li, L.-L. Huang. Synthesis, structures and properties of Ag+ complexes containing polyphosphine ligands with extended AgC, N-Oπ and C-Hπ interactions. J. Mol. Struct., 2016, 1117, 30-36. 

[11] T.-H. Huang*, J. Yan, H. Yang, C. Tan, Y. Yang, Synthesis, structures, and properties of polynuclear silver(I) complexes containing tetra-phosphine ligand with Ag···C interactions. Aust. J. Chem., 2016, 69, 336-342.

2015年以前(部分)

[1] T.-H. Huang*, J. Yan, H. Yang, X. -H. Zeng, Y. Yang Copper(I) coordination polymers with extened ππ interactions: synthesis, structure, characterization and luminescent properties. Chinese J. Inorg. Chem.(Wuji Huaxue Xuebao), 2015, 31(12):2393-2400.

[2] T.-H. Huang*, J. Yan, Y.-F. Liu, Y.-T. Xie, C. Jia, Synthesis, structural characterisation, and spectrscopic properties of copper(I) complexes and their applications to dye-sensitised solar cells. Aust. J. Chem., 2015, 1144-1151. 

[3] T.-H. Huang*, M.-H. Zhang, J. Yan, H. Yang, S.-X. Hao, C.-L. Zhang, Synthesis, structure, charactrization and luminescent properties of copper(I) complexes based on bis-diimine bridging ligands. Inorg. Chim. Acta., 2015, 437, 47-53. 

[4] T.-H. Huang*, J. Yan, H. Yang, L. Qiang, H.-M. Du, Synthesis, structure, characterization and florescent properties of Ag+ complexes with extended ππ interactions. J. Mol. Struct., 2015, 1101, 66-72.

[5] T.-H. Huang*, J. Yan, H. Yang, H.-M. Du, M.-H. Zhang, Synthesis, structure, and spectroscopic properties of Cu+ complexes and its application to solar cells. J. Coord. Chem., 2015, 68, 1514-1527. 

[6] T.-H. Huang, M.-H. Zhang, C.-Y. Gao, L.-T. Wang, Z. Kun, Interconversion of copper(I) to copper(II): synthesis, crystal structure, UV-Vis spectrum, and DFT studies of [Cu(Phterpy)2] (BF4)2(Phterpy = 4′-phenyl-2,2′ : 6′, 2′-terpyridine). Syn. React. Inorg., Met.-Org., Nano-Met. Chem. 2015, 45, 177-180.

[7] Ni Q-L, Zhang F, Huang T-H, et al., Octahedral and cyclic [Ag6] cluster cores stabilized by {Ag3(Spz)3(N-triphos)3} motifs [HSpz = Pyrazine-2-thiolate, N-triphos = Tris((diphenyl phosphanyl)methyl)amine]: Ag···Ag Interactions, Z. Anorg. Allg. Chem., 2015, 641(15): 2664-2669.

[8] C. Gao, M. Zhang, Z. Jiang, J. Liao, X. Xie, T.-H. Huang, J. Zhao, J. Bai, F. Pan, Preparation of a highly water-selective membrane for dehydration of acetone by incorporating potassium montmorillonite to construct ionized water channel. Chem. Eng. Sci. 2015, 135, 461-471.

 

主要奖励:  

2011年广西壮族自治区“省三好”;2012年 天津大学“优博基金”提名奖

联系方式: hth12389@163.com 


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