| [1] |
Cheng-an Tao, Jian Huang, Yujiao Li.
Exploring the Application of Artificial Intelligence in University Chemistry Laboratory Instruction
[J]. University Chemistry, 2025, 40(9): 5-10.
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| [2] |
Lei Qin, Kai Guo.
Application of Generative Artificial Intelligence in the Simulation of Acid-Base Titration Images
[J]. University Chemistry, 2025, 40(9): 11-18.
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| [3] |
Shuangshuang Long, Jingjing Liu, Xiaojuan Wang.
Exploring the Application of Generative AI in Analytical Chemistry Education
[J]. University Chemistry, 2025, 40(9): 25-33.
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| [4] |
Linlin Wu, Yonghua Zhou, Zhongbei Li, Liu Deng, Younian Liu, Limiao Chen, Jianhan Huang.
Digital Education Promoting Applied Chemistry Comprehensive Experiments: A Case Study of Catalytic Oxidation of Hydrogen Chloride and Reaction Kinetics
[J]. University Chemistry, 2025, 40(9): 273-278.
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| [5] |
Xiyuan Zhang, Rui Dong, Yang Yang, Jiapeng Ding, Zhiwei Miao.
Palladium-Catalyzed Tandem Cyclization of 4-Vinylbenzoxazinone and Indene-2-carbaldehyde: A Comprehensive Organic Chemistry Experiment
[J]. University Chemistry, 2025, 40(9): 361-367.
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| [6] |
Xiao Ma, Junjie Wang, Xin Chen, Jingcheng Li, Lihong Zhao, Xueping Sun, Shaojuan Cheng, Fang Wang.
Exploring Innovative Approaches to Chemistry Instructional Organization Driven by Artificial Intelligence
[J]. University Chemistry, 2025, 40(9): 99-106.
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| [7] |
Yan Zhang, Limin Zhou, Xiaoyan Cao, Mutai Bao.
Exploring the Application of Artificial Intelligence in Marine-Themed Integrated Physical Chemistry Experiments
[J]. University Chemistry, 2025, 40(9): 118-125.
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| [8] |
Haoran Zhang, Yaxin Jin, Peng Kang, Sheng Zhang.
The Convergence and Innovative Application of Artificial Intelligence in Scientific Research: A Case Study of Electrocatalytic Carbon Dioxide Reduction in the Context of the Dual-Carbon Strategy
[J]. University Chemistry, 2025, 40(9): 148-155.
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| [9] |
Junyu Peng, Feng Wang, Hongmei Yuan, Xiaoli Sun.
Exploration of the “Sheep-Flock Effect” Teaching Model Based on Dual Preview: Taking Instrumental Analysis Experiment Courses in Local Universities as an Example
[J]. University Chemistry, 2025, 40(9): 310-317.
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| [10] |
Fang Mi, Furong Zhang, Zuotao Xu, Yushan Liu, Ming Guan.
Visual Analysis of Dynamic Evolution and Development Trend of Analytical Chemistry Teaching Mode Research
[J]. University Chemistry, 2025, 40(9): 318-325.
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| [11] |
Zijun Huang, Feng Wu, Shaofeng Pi, Saijin Huang, Zhengjun Fang.
Knowledge Graph-based Development of AI Curriculum for Inorganic Chemistry Experiments and Exploration of New Teaching Paradigm
[J]. University Chemistry, 2025, 40(9): 228-237.
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| [12] |
Sha Pan, Bairu Yu, Jun Li, Ling Wu, Dan Li, Tianji Ma, Zhong Cao.
Study on the Bilingual Teaching Reform of Analytical Chemistry Driven by New Development Trends
[J]. University Chemistry, 2025, 40(8): 338-344.
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| [13] |
Kexin Feng, Jie Zhang, Yujia Sun, Qiong Ai, Longchun Li.
Synthesis, Purification and Characterization of Acetylferrocene and Ferrocenoylacetone
[J]. University Chemistry, 2025, 40(8): 307-314.
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| [14] |
Linghua Chen.
Teaching Reform of Analytical Chemistry in Food Science Major Using a Dual Linkage “Three-Phase Learning” Model
[J]. University Chemistry, 2025, 40(8): 78-91.
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| [15] |
Yang Li, Jiachen Li, Daidi Fan.
Preparation of Molybdenum Disulfide Nanosheets and Investigation of Their Nanozyme Properties: A Comprehensive Undergraduate Chemistry Experiment
[J]. University Chemistry, 2025, 40(8): 233-240.
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