

教育背景:
2018.11-2019.12澳大利亚科廷大学化工系访问学者;
在王少彬教授课题组从事访问学者研究,研究光辅助类芬顿效应。
2009.09–2011.08清华大学化学系博士后;
在朱永法教授(zhuyf@mail.tsinghua.edu.cn)的表面组从事博士后研究,研究光催化剂的控制合成、表征及应用。
2006.09–2009.07吉林大学化学学院无机合成与制备化学国家重点实验室无机化学专业理学博士;
学术研究:1)卟啉敏化二氧化钛光催化降解污染物;2)聚集形态控制锡卟啉有序自组装形成有机纳米粒子(指导老师:施展教授 吉林大学化学学院无机合成与制备化学国家重点实验室)。
2004.09–2006.07吉林大学化学学院无机化学专业;
学术研究:卟啉低聚物的合成、表征及应用(指导教师:王杏乔教授)。
1999.09–2003.07牡丹江师范学院化学系化学专业理学学士。
工作经历:
2018.09年至今:担任西安建筑科技大学化学与化工学院化工专业教师;
2011.09年至2018.08:担任西安建筑科技大学冶金工程学院化工专业教师;
2003.09至2004.07:担任哈尔滨第五十六中学校化学教师。
国家自然科学基金项目青年基金(21301125):钼酸铁的合成及其光助类芬顿效应的研究;能源陕西实验室基础研究中心开放课题(ESLB202415):基于多电场耦合异质结光催化剂的构建及催化增强机制研究;西安建筑科技大学人才建设基金(RC1209):氯离子调控钼酸镉的自组装生长以及光催化研究;西安建筑科技大学科技基金(ZR21068);光助磁性ZnFe2O4/SBA-15多重激活PMS及其光催化机理的研究。
1. Di Li,Qi Wen, Chunyan Gao, Yuan Zhang, Jun Zhou,* Shaomin Liu,Fang Song, Kai Wang,* Synergistic effect of lightning rod andpiezo-photocatalysis in sea urchin-shape Zn-MOF-74@g-C3N4step-scheme heterojunction for H2O2 production undervisible light irradiation, Chem. Eng. J., 2024, 498, 155079.
2. Di Li,*Hongmiao Li, Qi Wen, Chunyan Gao,Fang Song and Jun Zhou, Investigationon photo-assisted Fenton-like mechanism of single-atom Mn−N−Fe−N−Ni chargetransfer bridge across six-membered cavity of graphitic carbon nitride, Adv.Funct. Mater., 2024, 34, 2313631.
3. Di Li,Yuan Zhang, Chunyan Gao, Qi Wen, Xinguo Ma, Fang Song and Jun Zhou,* Photocatalysisand peroxymonosulfate activation by dual Z-scheme g-C3N4/PDI/Co-FePrussian blue analogue for doxycycline hydrochloride removal, J.Environ. Chem. Eng., 2025, 10, 107199.
4. ChunyanGao, Di Li,* Qi Wen, Fang Song and Jun Zhou,* Synthesis of dual p-n heterojunction of NiWO4/CdS/ZIF-67photocatalyst as a highly efficient photo-assisted fenton-like catalyst forremoval of doxycycline hydrochloride, Appl. Surf. Sci., 2024, 645,158872.
5. Di Li,Chunyan Gao, Yuan Zhang, Qi Wen, Fang Song, Jun Zhou,* Unraveling the transition ofZIF-67-on-ZIF-8 core–shell structured dodecahedron formed by an orientedattachment mechanism from type II to step-scheme for enhanced photocatalyticdegradation of oxytetracycline hydrochloride, Chem. Eng. Sci., 2024,300, 120668.
6. DiLi,* Yuhang Xue, Jinxuan You, Bin Feng and Jicai Li, Synergetic effect ofphotocatalysis and peroxymonosulfate activated by MIL-53Fe@PDI Z-schemeheterojunction photocatalyst for removal of doxycycline hydrochloride, Bull.Mater. Sci., 2024, 47, 264.
7. QiWen, Di Li,* Hongmiao Li, MingyangLong, Chunyan Gao, Lei Wu, Fang Song and Jun Zhou,* Synergeticeffect of photocatalysis and peroxymonosulfate activated by Co/Mn-MOF-74@g-C3N4Z-scheme photocatalyst for removal of tetracyclinehydrochloride, Sep. Purif. Technol., 2023, 313,123518.
8. QiWen, Di Li,* Chunyan Gao, Lei Wu, Fang Song and Jun Zhou,* Synthesis of dual p−n heterojunction ofNi/Mn-MOF-74/CdS@Co3O4 photocatalyst as a photoassisted Fenton-like catalystfor removal of tetracycline hydrochloride, Inorg. Chem., 2023,62, 20412−20429.
9. QiWen, Di Li,* Chunyan Gao, Yuhang Xue, Lei Wu, Fang Song and Jun Zhou,* Synthesisof a Co/Ni-MOF-74@PDI Z-scheme photocatalyst as a highly efficientphoto-assisted Fenton-like catalyst for the removal of chlortetracyclinehydrochloride, Dalton Trans., 2023, 52, 12763–12778.
10.Hongmiao Li, Di Li,* Mingyang Long,Xiaojuan Bai, Qi Wen and Fang Song, Solvothermal synthesis of MIL-53Fe@g-C3N4for peroxymonosulfate activation towards enhanced photocatalytic performance, Colloids and Surfaces A: Physicochem. Eng. Aspects, 2023,658, 130646.
11. MingyangLong, Di Li,* Qianqian Zhao, Hongmiao Li, Qi Wen, Li Wang, Lei Wu, FangSong and Jun Zhou*, A 1D/2D Bi2O3/g-C3N4step-scheme photocatalyst to activate peroxymonosulfate for the removal oftetracycline hydrochloride: insight into the mechanism, reactive sites,degradation pathway and ecotoxicity, Phys. Chem. Chem. Phys.,2023, 25, 12231–12244.
12. Di Li*, Mingyang Long,Qianqian Zhao, Hongmiao Li, Qi Wen and Fang Song, Synergetic effectof photocatalysis and peroxymonosulfate activation by CoTiO3/SBA-15,NiTiO3/SBA-15 and Fe2TiO5/SBA-15 for efficientphotocatalytic removal of oxytetracycline hydrochloride, Environ. Sci.: Water Res. Technol., 2022, 8, 1763–1776.
13. Di Li,Zhengxin Yao, Jingkai Lin, Wenjie Tian, Huayang Zhang,* Xiaoguang Duan and Shaobin Wang,* Nano-sizedFeVO4·1.1H2O and FeVO4 for peroxymonosulfate activationtowards enhanced photocatalytic activity, J. Environ. Chem. Eng.,2022, 10, 107199.
14. Mingyang Long, Di Li,* Hongmiao Li, Li Wang, Qianqian Zhao, Qi Wen and Fang Song, Synthesis of a ternary Bi2O3/CQDs/rGOphotocatalyst to active peroxymonosulfate for the removal of tetracyclinehydrochloride, Phys. Chem. Chem. Phys., 2022, 24, 29547–29556.
15. Di Li,* Hongmiao Li, Mingyang Long, Xiaojuan Bai, Qianqian Zhao,Qi Wen and Fang Song, Synergetic effect of photocatalysis and peroxymonosulfateactivation by MIL-53Fe@TiO2 on efficient degradation of tetracyclinehydrochloride under visible light irradiation, CrystEngComm,2022, 24, 4283–4293.
16. Mingyang Long, DiLi,* Hongmiao Li, Xinguo Ma, Qianqian Zhao, Qi Wen and Fang Song, Synergetic effect ofphotocatalysis and peroxymonosulfate activated by MFe2O4(M = Co, Mn, or Zn) for enhanced photocatalytic activity under visible lightirradiation, RSC Adv., 2022, 12, 20946–20955.
17. Di Li,* Mingyang Long, Hongmiao Li, Qianqian Zhao, Qi Wena and Fang Song, Synergetic effectsof photocatalysis and peroxymonosulfate activated by FeWO4 for enhancedphotocatalytic activity under visible light irradiation, New J. Chem., 2022, 46, 12324–12332.
18. Di Li,* Qianqian Zhao, Hongmiao Li and MingyangLong, Synergetic effect of photocatalysis and peroxymonosulfate activated byZnM2O4/SBA–15 (M = Fe and Mn) for enhanced degradation efficiencyof doxycycline hydrochloride under visible light irradiation, Mater.Today Commun., 2022, 31, 103315.
19. QianqianZhao, Mingyang Long, Hongmiao Li, Qi Wen and Di Li,* Synthesis of MFeO3/SBA–15 (M=La or Bi) forperoxymonosulfate activation towards enhanced photocatalytic activity, New J. Chem., 2022, 46, 1144–1157.
20. DiLi,* Qianqian Zhao,Qiaoxia Ren, Ziyue Song, Qiuli Zhang, Mingyang Long and Hongmiao Li, Doubleactivating peroxymonosulfate with g-C3N4/Fe2(MoO4)3to enhanced photocatalytic activity under visible light irradiation, New J. Chem., 2021, 45, 15818–15830.
21.Qianqian Zhao, Mingyang Long, Hongmiao Li, Li Wang, XiaojuanBai, Yujie Zhang and Di Li,* Synthesis of Bi2MoO6 and Activating Peroxymonosulfate to Enhance Photocatalytic Activity under Visible LightIrradiation, Cryst. Res. Technol., 2021, 56, 2000219.
22.Di Li,* Peipei Yan, Qianqian Zhao, Xiaojuan Bai, Xinguo Ma,Juanqin Xue, Yujie Zhang and Manbo Liu, Synthesis of Bi2WO6/Bi2MoO6heterostructured nanosheet and activating peroxymonosulfate to enhancephotocatalytic activity, J. Inorg. Organomet. P., 2020, 30, 5100–5107.
23. DiLi,* Peipei Yan, Qianqian Zhao, Li Wang, Xinguo Ma, JuanqinXue, Yujie Zhang and Manbo Liu, The hydrothermal synthesis of ZnSn(OH)6 and Zn2SnO4and their photocatalytic performances, CrystEngComm, 2020, 22, 4923–4932.
24.Peipei Yan, Di Li,* Xinguo Ma,Juanqin Xue, Yujie Zhang, Manbo Liu, Hydrothermal synthesis of Bi2WO6with a new tungsten source and enhanced photocatalytic activity of Bi2WO6hybridized with C3N4, Photochem. Photobiol. Sci.,2018, 17, 1084–1090.
25. Di Li,* Juanqin Xue, Jing Ma and Jieli Tang, Synthesis of Fe2(MoO4)3/MoO3heterostructured microrods and photocatalytic performances, New J. Chem., 2016, 40, 3330–3335.
26. Di Li,* Juanqin Xue and Xiaojuan Bai, Synthesis of ZnWO4/CdWO4 core–shellstructured nanorods formed by an oriented attachment mechanism with enhancedphotocatalytic performances, CrystEngComm, 2016, 18, 309–315.
27. Di Li* and Juanqin Xue, Synthesisof Bi2Sn2O7 and enhanced photocatalyticactivity of Bi2Sn2O7 hybridized with C3N4, NewJ. Chem., 2015, 39,5833–5840.
28. Di Li,* Juanqin Xue and Manbo Liu, Synthesisof Fe2(MoO4)3 microspheres by self-assemblyand photocatalytic performances,New J. Chem., 2015, 39, 1910–1915.
29. Di Li, Xiaojuan Bai, Chengsi Pan, JingXu, Xinguo Ma and Yongfa Zhu,* Synthesis of CdWO4 nanorodsand investigation of the photocatalytic activity, Phys. Chem. Chem. Phys., 2014, 16, 212–218.
西安建筑科技大学坐落在历史文化名城西安,南眺驰名中外的唐代大雁塔,北临举世闻名的明代长安城墙。学校总占地4300余亩,校园环境优美,办学氛围浓郁。学校办学历史源远流长,其办学历史最早可追溯到始建于1895年的北洋大学,积淀了我国近代高等教育史上最早的一批土木、建筑、环境类学科精华。1956年,在全国第三次高等学校院系调整时由原东北工学院、西北工学院、青岛工学院和苏南工业专科学校的土木、建筑、环境类系(科)整建制合并而成,时名西安建筑工程学院。1959年和1963年,曾先后易名为西安冶金学院、西安冶金建筑学院。1994年3月8日,经国家教委批准,更名为西安建筑科技大学,是公认的中国最具影响力的土木建筑类院校之一及原冶金部重点大学。
西安建筑科技大学继承和发扬了百余年来所形成的专业优势,经过并校50余年来历代建大师生的不懈拼搏,现已发展成为了一所具有深厚文化底蕴,浓郁学术氛围,优美校园环境,并在国内外享有较高声誉的,以土木、建筑、环境、材料学科为特色,工程学科为主体,兼有文、理、经、管、艺、法等学科的多科性大学。学校现有16个院(系),60个本科专业面向全国第一批招生,有权招收保送生,实行本硕连读。除建筑学、城市规划和景观学三个专业为五年学制外,其它本科专业均为四年制,建筑学、城市规划、土木工程、环境工程、建筑环境与设备工程、工程管理、材料科学与工程、给水排水工程、艺术设计9个专业为国家级特色专业。建筑学、城市规划、土木工程、建筑环境与设备工程、环境工程、工程管理、交通工程、给水排水工程、环境科学、冶金工程、材料科学与工程、信息管理与信息系统、艺术设计、社会体育(体育建筑管理)、会计学等15个本科专业为陕西省特色专业。学校现有国家高等学校教学指导委员会成员18人。
学校现有教职工2600余名,其中,中国工程院院士4人,中国科学院院士1人,南非科学院院士1人,具有高级职称的教师、工程技术人员及研究人员近800名,形成了一支阵容整齐、结构合理、素质优秀、实力雄厚的师资队伍。目前,学校在校各类学生近40000人,其中本科生20000余人,研究生近6000人,职业技术学院、继续教育学院在册学生近14000人。
西安建筑科技大学是国务院首批批准有权授予博士、硕士和学士学位的单位。学校设立研究生院,现有一级学科博士点7个、二级学科博士点31个,一级学科硕士点25个、二级学科硕士点94个,硕士点基本涵盖学校所有本科专业。学校拥有建筑学、土木工程、环境科学与工程、材料科学与工程、城乡规划学、风景园林学和管理科学与工程7个博士后流动站,结构工程、环境工程、建筑设计及其理论三个学科为国家级重点学科。
半个多世纪以来,西安建筑科技大学铸就了“传承文明、创造未来、育材兴国、科技富民”的办学宗旨,形成了“自强、笃实、求源、创新”的校训和“为人诚实、基础扎实、作风朴实、工作踏实”的优良校风,先后为国家培养了21万余名德才兼备的栋梁之才,研发了大量高水平的科研成果,为国家经济社会建设和行业发展做出了突出的贡献。
近年来,学校以“提高教育教学质量求生存、狠抓学科建设上水平、优化资源配置求效益、深化体制改革促发展”为办学思路,全面实施校园建设工程、教育教学质量工程、学科建设工程、人才队伍建设工程、创新工程、文化建设工程等六大奠基工程,使得学校步入了和谐快速发展的道路,学校综合办学实力大大增强,相继实现了院士、国家重点学科、一级学科博士点、博士后流动站与博士点数、硕士点数、学校综合排名、校园面积、年经费到款额等衡量学校办学层次重要指标零的突破或翻番。学校顺利入选教育部首批“卓越工程师教育培养计划”实施学校、全国64所“研究生专业学位教育综合试点单位”、“国家高水平大学公派研究生项目平台和优秀本科生国际交流项目实施院校”,荣获全国50所“工程硕士教育创新院校”和全国60所“毕业生就业典型经验高校”。2011年,学校被中共中央授予“全国先进基层党组织”荣誉称号。
“十二五”期间,学校将乘科教兴国、西部大开发的春风,全面贯彻落实《国家中长期教育改革和发展规划纲要(2010-2020年)》和《陕西省贯彻<国家中长期教育改革和发展纲要(2010-2020年)>实施意见》,坚持“传承文明、开创未来、育材兴国、科技富民”的办学宗旨,坚持“提高教育教学质量求生存,狠抓学科建设上水平,优化资源配置求效益,深化体制改革促发展”的总体发展思路,抢抓机遇,迎难而上,振奋精神,开拓进取,努力创建特色鲜明的国际知名国内高水平大学。