
课程编号 | 课程名称 | 课程级别 | 学时 |
20600017g | 分析化学 | 公共必修课 | 32 |
20610019g | 基础化学实验 | 公共基础课 | 64 |
20600017g | 大学化学实验 | 公共基础课 | 16 |
1、黑龙江省博后基金面上项目,2022-2024,LBH-Z21038; 2、东北农业大学“东农学者计划”-学术骨干项目,2021-2023; 3、黑龙江大学“无机功能材料-教育部重点实验室”开放课题项目,2023-2025; 4、横向课题:PC/ABS热降解气体的成分和含量分析,2024-2025; |
研究方向: 功能无机纳米材料的设计与合成用于光催化降解有机污染物、重金属离子还原、光催化氮气还原合成氨、二氧化碳还原等环境和能源领域。 发表论文: |
1)Chihao Cao, Yangyang Huang, Limeili Tian,
Jing Wang, Miaomiao Yang, Qingqiang Meng,* , Ying Zhang,** 2D/2D Bi2MoO6/g-C3N4
direct Z-scheme Van der Waals heterojunction photocatalyst for boosting
nitrogen fixation. Journal of Environmental Chemical Engineering 13 (2025)
115019.
2)Qingqiang Meng,* Chihao Cao, Jing Wang, Limeili Tian,
Yangyang Huang, Miaomiao Yang, Meng Wang, Bowen Cong,* and Ying Zhang*Atomically
Thin Bi2MoO6 Nanosheets for Efficient Visible-Light
Photocatalytic Nitrogen Fixation via O-Vacancy Tailored Exposure of Mo
Sites. ACS Applied Nano Materials,2024, 7, 15808−15818.
3) Qingqiang Meng, Chade Lv,
Jingxue Sun*, Weizhao Hong, Weinan Xing, Liangsheng Qiang, Gang Chen* and
Xiaoli Jin, High-efficiency Fe-Mediated Bi2MoO6 nitrogen-fixing
photocatalyst: reduced surface work function and ameliorated surface reaction.
Applied Catalysis B: Environmental, 2019, 256: 117781. (SCI一区,IF=22.1,ESI TOP1%)
4) Qingqiang Meng, Yansong Zhou,
Gang Chen*, Yidong Hu, Chade Lv, Liangsheng Qiang,* Weinan Xing, Integrating
both homojunction and heterojunction in QDs self-decorated Bi2MoO6/BCN
composites to achieve an efficient photocatalyst for Cr(VI) reduction. Chemical
Engineering Journal, 334 (2018): 334-343. (SCI一区, IF=15.1,ESI TOP1%)
5) Qingqiang Meng, Yuchen Cai,
Bowen Cong, Weinan Xing, Gang Chen,* Enhanced carriers separation efficiency in
g-C3N4 modified with sulfonic groups for efficient
photocatalytic Cr(VI) reduction. Materials Research Bulletin, 2020, 122,
110681. (SCI二区,IF=5.4)
6) Yidong Hu, Qingqiang Meng,
Chunmei Li, Yansong Zhou, Zhonghui Han, Weinan Xing, Sue Hao, and Gang Chen*,
Template-free synthesis of Na0.5Bi2.5Ta2O9/Bi4TaO8Cl
nano-heterostructures via a one-pot molten salt reaction for efficient
photocatalysis. Journal of Materials Chemistry C, 2019, 7, 2936-2942. (共同一作,SCI二区,IF=6.4)
7) Qingqiang Meng, Wanting Sun,
Yunbo Luan, Liqiang Jing. Effects of phosphate modification on the thermal
stability and photocatalytic activity of nanosized Fe2O3.
Chemical Journal of Chinese Universities, 2014, 6, 1782-1787. (SCI四区,IF=1.574)
8) Peng Luan, Qingqiang Meng, Jing
Wu, Jie Zhang*, Unique Layer-Doping-Induced Regulation of Charge Behavior in
Metal‐Free Carbon Nitride Photoanodes for Enhanced Performance. ChemSusChem,
2020, 13: 328-333.
9) Congmin Zhang, Yanling Xu*, Chade Lv,
Xin Zhou, Yu Wang, Weinan Xing, Qingqiang Meng, Yi Kong, and Gang Chen*.
Mimicking π Backdonation in Ce-MOFs for Solar-Driven Ammonia Synthesis. ACS
Applied Materials & Interfaces, 2019, 11, 33, 29917-29923.
10) Xiaoli Jin, Chade Lv, Xin Zhou,
Haiquan Xie, Shanfu Sun, Yue Liu, Qingqiang Meng, Gang Chen*. A bismuth
rich hollow Bi4O5Br2 photocatalyst enables
dramatic CO2 reduction activity. Nano Energy, 2019, 64: 103955.
11) Xu Yang, Junsheng Meng, Yu Wang,* Qingqiang
Meng, Yongyuan Hu, Andi Di, Yuehan Wu and Gang Chen*. Novel formation of
Bi@BiFe-glycolate hollow spheres and their conversion into Bi2O3/BiFeO3
composite hollow spheres with enhanced activity and durability in visible
photocatalysis. New Journal of Chemistry, 2019, 43: 4648-4648.
12) Congmin Zhang, Gang Chen*, Chade Lv,
Yuan Yao, Yanling Xu, Xiaoli Jin, and Qingqiang Meng. Enabling Nitrogen
Fixation on Bi2WO6 Photocatalyst by c-PAN Surface
Decoration. ACS Sustainable Chemistry & Engineering, 2018, 6: 11190-11195.
13) Xiaoli Jin, Chade
Lv, Xin Zhou, Congmin Zhang, Qingqiang Meng, Yue Liu, Gang Chen*. Molecular
adsorption promotes carrier migration: Key step for molecular oxygen activation
of defective Bi4O5I2. Applied Catalysis B: Environmental, 2018,
226: 53-60.
14) Weinan Xing, Gang
Chen*, Chunmei Li, Zhonghui Han, Yidong Hu and Qingqiang Meng. Doping
effect of non-metal group in porous ultrathin g-C3N4
nanosheets towards synergistically improved photocatalytic hydrogen
evolution. Nanoscale, 2018,
10: 5239-5245.
15) Weinan Xing,
Wenguang Tu, Zhonghui Han, Yidong Hu, Qingqiang Meng, and Gang Chen*.
Template-Induced High-Crystalline g-C3N4 Nanosheets for
Enhanced Photocatalytic H2 Evolution. ACS Energy Letters, 2018, 3: 514-519.
16) Weinan Xing,
Chunmei Li, Yu Wang*, Zhonghui Han, Yidong Hu, Dahong Chen, Qingqiang Meng,
Gang Chen*. A novel 2D/2D carbonized poly-(furfural alcohol)/g-C3N4
nanocomposites with enhanced charge carrier separation for photocatalytic H2
evolution. Carbon, 2017, 115:
486-492.
17) Weinan Xing, Chunmei Li, Gang Chen*, Zhonghui Han, Yansong Zhou, Yidong
Hu, Qingqiang Meng. Incorporating a novel metal-free interlayer into g-C3N4
framework for efficiency enhanced photocatalytic H2 evolution
activity. Applied Catalysis B: Environmental, 2017, 203: 65-71.
18) Weinan Xing, Gang Chen*, Chunmei Li, Jingxue Sun, Zhonghui Han, Yansong
Zhou, Yidong Hu, Qingqiang Meng. Construction of Large-Scale Ultrathin
Graphitic Carbon Nitride Nanosheets by a Hydrogen-Bond-Assisted Strategy for
Improved Photocatalytic Hydrogen Production and Ciprofloxacin Degradation
Activity. ChemCatChem, 2016, 8(17): 2838-2845.
19) Wanting Sun, Qingqiang Meng, Liqiang Jing*, Lumei He, Xuedong
Fu. Synthesis of long-lived photogenerated charge carriers of Si-modified
alpha-Fe2O3 and its enhanced visible photocatalytic
activity. Materials Research Bulletin, 2014, 49: 331-337.
20) Mingzheng Xie, Qingqiang Meng, Peng Luan, Yujie Feng and Liqiang
Jing*. Synthesis of mesoporous TiO2-coupled Fe2O3
as efficient visible nano-photocatalysts for degrading colorless
pollutants. RSC Advances, 2014, 4(94): 52053-52059.
21) Wanting Sun, Qingqiang Meng, Liqiang Jing*, Dening Liu, and Yue
Cao. Facile Synthesis of Surface-Modified Nanosized alpha-Fe2O3
as Efficient Visible Photocatalysts and Mechanism Insight. The Journal of
Physical Chemistry C, 2013, 117(3): 1358-1365.
22) Yunbo Luan, Liqiang Jing*, Qingqiang Meng, He Nan, Peng Luan,
Mingzheng Xie, and Yujie Feng*. Synthesis of Efficient Nanosized Rutile TiO2
and Its Main Factors Determining Its Photodegradation Activity: Roles of
Residual Chloride and Adsorbed Oxygen. The Journal of Physical
Chemistry C, 2012, 116(32): 17094-17100.
1、2024年黑龙江省“E类”高层次人才;
2、2021年获东北农业大学“学术骨干”称号;
3、2023年东北农业大学“优秀教案三等奖”;