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[专家学者] 郑州大学化学与分子工程学院要红昌

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发表于 2018-4-26 20:02:21 | 只看该作者 回帖奖励 |倒序浏览 |阅读模式

个人简历

要红昌,南京大学理学博士,香港中文大学访问学者。现任郑州大学化学与分子工程学院教授,博士生导师。研究方向为气敏材料的制备及其在呼气分析、环境监测等领域的应用研究,以及光催化材料(包括二氧化碳还原、光解水制氢、污染物降解)的设计、合成及性能研究。主持和参与国家自然科学基金面上项目3项、国家自然科学基金青年基金3项,主持河南省教育厅、河南省科技厅和郑州市科技局项目多项。近年来,以通讯作者或第一作者在Applied Catalysis B: Environmental,ACS Appl. Mater. Interfaces, J. Power Sources,Sensors and Actuators B,J.Hazard.Mater., Chem. Commun., Inorg. Chem.等刊物上发表SCI论文30余篇,其中中科院JCR分区工程技术一区8篇,化学一区1篇。

联系方式:

邮箱:yaohongchang@zzu.edu.cn;

hchyao111@163.com

主要研究方向:

1.半导体气敏材料的制备及其选择性研究

气体传感器在环境监测、污染监控、煤矿安全、食品检测以及呼气分析等领域发挥着日益重要的作用。金属氧化物半导体气体传感器因灵敏度高、稳定性好、结构简单、价格便宜等特点而受到广泛关注。但半导体气敏材料存在着选择性差等缺点,限制了气体传感器在特定领域的发展和应用。课题组针对这些问题,根据半导体材料对不同气体的气敏机理,通过掺杂、纳米组装、功能化等技术的综合运用,从而达到对特定气体的选择性检测。相关研究成果已发表在Sens. Actuator B等相关专业杂志上。

2.可见光催化材料的制备

环境污染和能源危机是当今世界面临的共同问题。利用太阳能矿化有机污染物、利用太阳能分解水制氢以及利用太阳能把二氧化碳还原为有机原料,是解决上述问题的有效途径。而有效利用太阳能实现污染物矿化、分解水制氢以及二氧化碳还原的关键,是可见光催化剂的制备。课题组通过金属离子掺杂、表面敏化、贵金属沉积以及半导体复合等方法,设计合成新型的可见光催化剂;通过催化剂带隙结构的调节,提高可见光催化效率。相关研究成果已发表在ACS Appl. Mater. Interfaces,J.Hazard.Mater.,Catal. Comm.等专业杂志上。

代表性论文:

[20] Jun-Yue Shen, Meng-Di Wang, Yan-Fang Wang, Jing-Ya Hu, Yanyan Zhu*, Yu Xin Zhang*, Zhong-Jun Li,Hong-Chang Yao*. Iron and carbon codoped WO3with hierarchical walnut-like microstructure for highly sensitive and selective acetone sensor.Sensors and Actuators B2018, 256, 27-37.

[19] Qun-Zeng Huang, Ji-Chao Wang, Li-Qun Ye, Qian Zhang,Hong-Chang Yao*, Zhong-Jun Li*. A novel p–n heterojunction Mn0.25Cd0.75S/Co3O4for highly efficient photocatalytic H2evolution under visible light irradiation.J.Taiwan Inst. Chem. E.2017, 80, 570–577.

[18] Qun-Zeng Huang, Yan Xiong, Qian Zhang,Hong-Chang Yao*, Zhong-Jun Li*. Noble metal-free MoS2modified Mn0.25Cd0.75S for highly efficient visible-light driven photocatalytic H2.Appl. Catal. B: Environ.2017, 209, 514–522.

[17] Qun-Zeng Huang, Ji-Chao Wang, Pan-Pan Wang,Hong-Chang Yao*, Zhong-Jun Li*. In-situ growth of mesoporous Nb2O5microspheres on g-C3N4nanosheets for enhanced photocatalytic H2evolution under visible light irradiation.Int. J. Hydrogen Energy2017, 42, 6683-6694.

[16]Jun-Yue Shen, Lin Zhang, Juan Ren, Ji-Chao Wang,Hong-Chang Yao*, Zhong-Jun Li*. Highly enhanced acetone sensing performance of porous C-doped WO3hollow spheres by carbon spheres as templates.Sensors and Actuators B2017, 239, 597–607.

[15]Ji-Chao Wang,Hong-ChangYao*,Ze-Yu Fan, Lin Zhang, Jian-She Wang, Shuang-Quan Zang andZhong-Jun Li*. Indirect Z-Scheme BiOI/g-C3N4Photocatalysts with Enhanced Photoreduction CO2Activity under Visible Light Irradiation.ACS Appl. Mater. Interfaces,2016, 8, 3765-3775.

[14]Ji-Chao Wang, Juan Ren,Hong-Chang Yao*, Lin Zhang, Jian-She Wang, Shuang-Quan Zang, Li-Feng Han,Zhong-Jun Li*. Synergistic Photocatalysis of Cr(VI) Reduction and 4-Chlorophenol Degradation over Hydroxylatedrmalpha-Fe2O3under Visible Light Irradiation.J. Hazard. Mater.2016, 311,11-19.

[13] Xiao-Bo Wang, Hui-Qin Zheng, Heng Rao,Hong-Chang Yao*, Yao-Ting Fan* and Hong-Wei Hou. Synthesis of a new iron–sulfur cluster compound and its photocatalytic H2evolution activity through visible light irradiation.Appl. Organomet. Chem.2016, 30, 638-644.

[12]Ji-Chao Wang, Lin Zhang, Wen-Xue Fang, Juan Ren, Yong-Yu Li,Hong-Chang Yao*, Jian-She Wang, and Zhong-Jun Li*. Enhanced Photoreduction CO2Activity over Direct Z‑Scheme α‑Fe2O3/Cu2O Heterostructures under Visible Light Irradiation.ACS Appl. Mater. Interfaces2015, 7, 8631−8639.

[11]Teng Xiao, Xiu-Yue Wang, Zhi-Hua Zhao, Liu Li, Jian-She Wang,Hong-Chang Yao*, Zhong-Jun Li.Highly sensitive and selective acetone sensor based on C-doped WO3for potential diagnosis of diabetes mellitus.Sensors andActuator B2014, 199, 210-219.

[10]Hong-Chang Yao*, Xue-Li Zhao, Xing Chen, Ji-Chao Wang, Qian-Qing Ge, Jian-She Wang, Zhong-Jun Li. Processing and characterization of CoO and Sm2O3codoped ceria solid solution electrolyte.J. Power Sources2012, 205, 180-187.

[9] Rui-Rui Pei, Xing Chen, Yang Suo, Teng Xiao, Qian-Qing Ge,Hong-Chang Yao*, Jian-She Wang, Zhong-Jun Li*.Synthesis of La0.85Sr0.15Ga0.8Mg0.2O3−δpowder by carbonate co-precipitation combining with azeotropic-distillation process. Solid State Ionics2012, 219, 34–40.

[8] Xue-Li Zhao, Jia-Jia Liu, Teng Xiao, Ji-Chao Wang,Yu-Xin Zhang,Hong-Chang Yao*, Jian-SheWang, Zhong-Jun Li. Effect of Ca co-dopant on the electrical conductivity of Gd-doped ceria.J. Electroceram.2012, 28, 149-157.

[7]Hong-Chang Yao*, Yu-Xin Zhang, Jia-Jia Liu, Yue-Li Li, Jian-She Wang, Zhong-Jun Li.Synthesis and characterization of Gd3+and Nd3+co-doped ceria by using citric acid–nitrate combustion method.Mater. Res. Bull.2011, 46, 75–80.

[6]Wen-Juan Chu,Hong-Chang Yao, Yao-Ting Fan*, Hong-Wei Hou.Anion exchange induced tunable catalysis properties of an uncommon butterfly-like tetranuclear copper(II) cluster and magnetic characterization. Dalton Trans.2011,40, 2555–2561.

[5] Huijun Li,Hongchang Yao, Erpeng Zhang, Yanyuan Jia, Hongwei Hou*, Yaoting Fan.Crystal structures and magnetism of infinite alternating chains arranged by paddle-wheel dinuclear copper and mononuclear copper units. Dalton Trans.2011, 40, 9388–9393.

[4]Hong-Chang Yao, Xian-Wei Wang, Hao Dong, Rui-Rui Pei, Jian-She Wang, Zhong-Jun Li*.Synthesis and characteristics of nanocrystalline YSZ powder by polyethylene glycol assisted coprecipitation combined with azeotropic-distillation process and its electrical conductivity. Ceram. Int.2011, 37, 3153–3160.

[3]Hong-Chang Yao, Jian-She Wang, Dong-Ge Hu, Jing-Feng Li, Xiao-Rui Lu, Zhong-Jun Li*.New approach to develop dense lanthanum silicate oxyapatite sintered ceramics with high conductivity. Solid State Ionics2010, 181, 41–47.

[2]Hong-Chang Yao,Jun-Jie Wang, Yun-Sheng Ma, Oliver Waldmann, Wen-Xin Du, You Song, Yi-Zhi Li, Li-Min Zheng, Silvio Decurtins and Xin-Quan Xin. An iron(III) phosphonate cluster containing a nonanuclear ring.Chemical Communications2006, 1745–1747.

[1]Hong-Chang Yao, Yi-Zhi Li, You Song, Yun-Sheng Ma, Li-Min Zheng,* and Xin-Quan Xin. Dodecanuclear Manganese(III) Phosphonates with Cage Structures.Inorganic Chemistry2006, 45, 59-65.


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