[1]专著:丹媛媛,《二氧化铅基复合材料复合共沉积制备及其性能、应用研究》, 2020.5, 四川大学出版社, ISBN:978-7-5690-3367-0.
[2]Yuanyuan Dan*, Haibo Lin, Lizhuang Chen, Li Zhang, Jing Su, Huijuan Yue, A composite electrodeposited PbO2/SnO2 positive electrode material for hybrid supercapacitors, RSC Advances, 2015, 5(120): 98983~98989.
[3]Yuanyuan Dan*, Yuanyuan Sun, Lizhuang Chen, Composite Electrodeposited PbO2/Co3O4 on a Ti Substrate as Positive Electrode Materials for a Hybrid Supercapacitor, Chinese Journal of Structural Chemistry, 2019, 38 (6): 882-892.
[4]Xu Liu, Teng Teng, Leixiang Gu, Lichao Ge, Wen He, Huiyong Liao, Yijun Che, Chongyao Liang, Yuanyuan Dan*, Lizhuang Chen, Facile Synthesis of Layered Sodium Manganese Oxide for Application in Asymmetric Supercapacitor, Chinese Journal of Structural Chemistry, 2020, 39 (4): 756-764.
[5]Weichao Feng, Gang Liu, Peipei Wang, Jiawei Zhou, Leixiang Gu, Lizhuang Chen, Xueying Li, Yuanyuan Dan*, Template Synthesis of a Heterostructured MnO2@SnO2 Hollow Sphere Composite for High Asymmetric Supercapacitor Performance, ACS Applied Energy Materials, 2020, 3, 7284-7293.
[6] Jiawei Zhou, Leixiang Gu, Zhenghua Zhu, Dongsheng Liu, Wenhe Zhong, Xueying Li, Lizhuang Chen, Xiaofang Cheng, Yuanyuan Dan*, An Efficiency aqueous hybrid supercapacitor with high working voltage based on porous PbO2/WO3·H2O positive electrode, International Journal of Hydrogen Energy, 2022,47, 11962-11974.
[7]Dongsheng Liu, Xiufang Xie, Yongqi Liu, Zhihui Pang, Xueying Li, Lizhuang Chen, and Yuanyuan Dan*, Efficient hybrid capacitive deionization device with high operating voltage based on layered sodium manganese oxide, ACS EST Water, 2024, 4, 287-298.
[8]Yongqi Liu, Dongsheng Liu, Bowei Huang, Yating Chen, Xueying Li, Lizhuang Chen, Yuanyuan Dan*, Bi2O3@MoS2 heterojunction for enhanced photoelectrocatalytic hydrogen evolution, Journal of Electroanalytical Chemistry, 2024, 957, 118127-118139.
[9]Yuanyuan Dan*, Lingjun Wu, Yi Cao, Yongqi Liu, Wenhe Zhong, Can Liu, Qianwen Gu, Xueying Li, Lizhuang Chen, Heterostructural PbO2/Co3O4 composite for anodic oxidation of phenol: An energy-efficient hybrid process,Journal of Environmental Chemical Engineering, 2024, 12, 112978-112989.