| 讲授课程 《大学化学》《材料化学》《创新基础》《无机化学实验》《无机及分析化学实验》《无机化学专论实验》 教育及工作经历 2020-10至今 聊城大学,讲师 2016-08 至 2020-08, 南京大学, 化学, 博士 2011-09 至 2014-07, 吉林大学, 应用化学, 硕士 2007-09 至 2011-07, 山东师范大学, 化学工程与工艺, 学士 科研项目 1、国家自然科学基金青年项目, FAU纳米晶种诱导合成不同结构单元硅铝酸盐分子筛及其烷烃催化性能研究,2024-2026,主持 2、山东省自然科学基金青年项目,新型季铵盐模板剂导向构筑硅铝酸盐分子筛的研究,2022-2024,主持 3、聊城大学科研启动基金,新型季铵盐模板剂设计导向合成硅铝酸盐分子筛的研究 4、山东省高等学校青年创新团队计划项目,分子筛封装纳米金属催化剂的构筑及其在低碳烷烃脱氢中的应用,2022-2025,参与 5、聊城大学光岳青年学者创新团队项目,碳基能源高效催化转化,2022-2025,参与 个人及指导学生所获荣誉 1. 2025年 优秀实习指导教师 2. 2024年 本科学士优秀毕业论文 指导教师 3. 2024年 光岳新秀 主要成果 Wenwen Zi, Zihao Gao, Jun Zhang, Baoxun Zhao, Xianshu Cai, Hongbin Du*, Feijian Chen*. An extra-large-pore pure silica zeolite with 16×8×8-membered ring pore channels synthesized by using an aromatic organic directing agent, Angew. Chem. Int. Ed., 2020, 59, 3948-3951 Wenwen Zi *, Xinyue Zhang, Yutong Shao, Xiangyu Jiang, Junjun Zhang, Chengzhi Guo, Konggang Qu, Jun Zhang, Shuo Tao. Controllable direct synthesis of FER zeolite Nanosheets by dual-template for the efficient performance in LDPE cracking. Cryst. Growth Des., 2025, 25, 5761–5771. Wenwen Zi,* Zejing Hu, Xiangyu Jiang, Junjun Zhang, Chengzhi Guo, Konggang Qu, Shuo Tao, Dengran Tan and Fangling Liu. Morphology Regulation of Zeolite MWW via Classical/Nonclassical Crystallization Pathways. Molecules, 2024, 29, 170 Wenwen Zi,* Jun Zhang, Jingang Jin, Konggang Qu, Shuo Tao, Junjun Zhang. Synthesis and Crystal Structure of a New RTH-Type Precursor and Its Interlayer Expanded Zeolite. Chem. Eur. J., 2023, 29, e202202754 Wenwen Zi, Jun Zhang, Xianshu Cai, Feng Jiao, Hongbin Du*. Synthesis and characterization of a layered aluminosilicate NUD-11 and its transformation to a 3D stable zeolite, Dalton Trans., 2020, 49, 11682-11688 Wenwen Zi, Xianshu Cai, Feng Jiao, Hongbin Du*. Synthesis, structure and properties of an extra-large-pore aluminosilicate zeolite NUD-6, Chem. Eur. J. 2020, 26, 1714 3-17148 Wenwen Zi, Zihao Gao, Jun Zhang, Jinghui Lv, Baoxun Zhao, Yufei Jiang, Hongbin Du*, Feijian Chen*. Designed synthesis of an extra-large pore zeolite with a 14-membered ring channel via supramolecular assembly templating approach, Microporous Mesoporous Mater., 2019, 290, 109654
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