| 李建章 姓名:李建章 出生年月:1963.06 职称:教 授 电子邮箱:lyl63@sins.com 通讯地址:四川轻化工大学化学与环境工程学院化学系 | 性别:男 学位:博士 联系电话:13778512676 邮编:643000 |

个人描述
硕士研究生导师。主要承担有机化学及实验、精细化学品化学、绿色化学工艺等课程教学工作。曾获校级教学成果奖5项,发表教改论文8篇。主要从事有机催化仿酶催化、光催化等研究,发表SCI收录学术论文200余篇。自2023年起,连续三年入选化学科学领域全球前2%顶尖科学家榜单。指导研究生21人,有5人获校级优秀学位论文5。近3毕业研究生有6位考上博士研究生。荣获学校教学名师、师德先进个人、优秀教师、优秀研究生指导教师等荣誉。

学习及工作经历
1. 学习经历
1983.09 - 1987.07,南充师范学院化学系,大学本科/学士
1993.09 - 1996.07,四川大学化学系,研究生/硕士;
2002.09 - 2005.06,四川大学化学学院,研究生/博士;
2. 工作经历
1987.07 - 1992.11,自贡师范高等专科学校化学系,助教
1992.12 - 1999.11,自贡师范高等专科学校化学系,讲师
1999.12 - 2004.11,自贡师范高等专科学校化学系,副教授/系主任
2004.12 - 2008.07,四川理工学院化学系,教授/系主任
2008.08 - 2016.03,四川理工学院化学与制药工程学院,教授/院长
2016.04 - 2018.11,四川理工学院研究生处,教授/处长
2018.12 - 2022.03,四川轻化工大学研究生处,教授/处长
2022.04-迄今, 四川轻化工大学化学与环境工程学院,教授

主要研究领域
主要从事有机催化、仿酶催化、光催化等研究

主持的科研项目
主持完成省部级项目3项,地厅级科研项目10项,横向1项

代表性论著
在国内外学术期刊以第一作者或通讯作者发表SCI收录论文200余篇,其中1区论文14篇如下:
1. Studies on p-Nitrophenyl Picolinate (PNPP) Cleavage by Mono-Schiff Base Complexes with Aza-Crown Ether or Morpholino Pendants in CTAB Micellar Solution, Journal of Dispersion Science and Technology, 2009, 30, 6, 656-663.
2. Hydrolysis Kinetics of p-Nitrophenyl Picolinate Catalyzed by Mono-Schiff Base Complexes with Aza-Crown Ether or Morpholino Pendants in CTAB Surfactant Micellar Solution, Journal of Dispersion Science and Technology, 2011, 32, 1, 14-22.
3. Studies on p-Nitrophenyl Picolinate Cleavage by Unsymmetrical Bis-Schiff Base Manganese(III) and Cobalt(II) Complexes in CTAB Surfactant Micellar Solution, Journal of Dispersion Science and Technology, 2013, 34, 3, 476-482.
4. In-situ fabrication of Z-scheme CdS/BiOCl heterojunctions with largely improved photocatalytic performance, Colloids and Surfaces A, 2020, 599, 5, 124880-124888.
5. One-pot hydrothermal synthesis of MXene Ti3C2/TiO2/BiOCl ternary heterojunctions with improved separation of photoactivated carries and photocatalytic behavior toward elimination of contaminants, Colloids and Surfaces A, 2020, 603, 9, 125239-125250.
6. Enhanced photocatalytic performance of BiOCl benefited from the effective separation of photogenerated carriers and enhanced surface hydroxyl content, Desalination and Water Treatment, 2020, 203, 3, 230-237.
7. Oxygen vacancies facilitated visible light photoactivity of CdWO4 prepared by ionic liquid assisted hydrothermal method, Ceramics International, 2021, 47, 6, 26572-26578.
8. Improved visible light responsive photocatalytic hydrogen production over g-C3N4 with rich carbon vacancies, Ceramics International, 2021,48, 9, 1439-1445.
9. Rich carbon vacancies facilitated solar light-driven photocatalytic hydrogen generation over g-C3N4 treated in H2 atmosphere, International Journal of Hydrogen Energy, 2022, 47, 10, 39886-39897.
10. Boosted photocatalytic performance of OVs-rich BiVO4 hollow microsphere self-assembled with the assistance of SDBS, Journal of Colloid and Interface Science, 2023, 634, 3, 874-886.
11. Largely elevated photocatalytic hydrogen generation over Eu doped g-C3N4 photocatalyst, International Journal of Hydrogen Energy, 2023, 48, 4, 24356-24368.
12. Enhanced photocatalytic performance of persimmon cake like oxygen vacancies enriched NiO/BiVO4 heterojunctions benefited from S-scheme interfacial charge pairs separation and transfer mechanism, Separation and Purification Technology, 2023, 326, 8, 24860-124873.
13. In-situ fabrication of Bi2S3/g-C3N4 heterojunctions with boosted H2 production rate under visible light irradiation, Fuel, 2023, 341, 2, 127629-127639.
14. Sorghum straw carbon assisted preparation of thin-sheet like BiOCl with boosted photocatalytic activity toward detoxification of three contaminants, Applied Surface Science, 2024, 644, 2, 158750-158761.

社会兼职
1. 曾任四川省化学化工学会理事
2. 曾任绿色催化四川省高校重点实验室主任

获奖及专利
获奖:
省级一等奖1项(排名6/6)。地厅级奖3项,其中二等奖2项(排名1/5),三等奖1项(排名2/4)。获自贡市自然科学优秀论文一等奖1篇,二等奖1篇,三等奖3篇
授权专利:
1. 钟俊波,李建章,曾俊,贺进进,胡伟,一种圆球状α-Fe2O3的制备方法,ZL 2014 1 0496688. 7
2. 李建章,钟俊波,王绍华,胡伟,一种束状棱柱囚氧化三钻的制备方法,ZL 2014 1 0496631.7
3.袁月祥,孙将,李建章,黄生田,水生产碱菌DF-27菌株及其应用,ZL 2019 1 0386284.5
4. 黄生田,钟俊波,陈久福,李建章,李敏娇,一种增强TiO2表面光电压的方法,ZL 2023 1 1119451.2
5. 钟俊波,李建章,黄生田,陈久福,一种表面光电压信号增强型BiOCl的处理方法,ZL 2021 1 1497952.5



