代表性科研论文: Sun, H.; Li, L.; Zhu, Z.; Li, X.; Zhu, Z.; Yuan, T.; Yang, J.; Pang, Y.; Zheng, S. Vacancy-Defective Nano-Carbon Matrix Enables Highly Efficient Fe Single Atom Catalyst for Aqueous and Flexible Zn-Air Batteries. Chemical Engineering Journal 2024, 496, 153669. Sun, H.; Li, X.; Chen, T.; Xia, S.; Yuan, T.; Yang, J.; Pang, Y.*; Zheng, S.* In Situ Trapping Strategy Enables a High-Loading Ni Single-Atom Catalyst as a Separator Modifier for a High-Performance Li-S Battery[J]. ACS Applied Materials & Interfaces 2023, 15(15): 19043-19054. Qilin Zhang,1,# Yu Wu,2,# Hao Sun,3,# Zhongjie Zhu, Jinrong Yang,∗ Jie Wang, Hongwei Zhao, MinChen, Sanzhao Song, Shiyou Zheng, Dengsong Zhang, Hui Yang,∗Zhi Zhu∗and Chunlei Wang* Boosting Oxygen Reduction Activity on Metal Surfaces through Midinfrared Stimulation Fine-tuning Interfacial Water[J]. The Innovation 2025, 1. Sun, H.; Li, Z.; Xia, S.; Pang, Y.; Yang, J.; Zheng, S.* High-Performance Lithium-Sulfur Battery Enabled by Jointing Cobalt Decorated Interlayer and Polyethyleneimine Functionalized Separator[J]. Journal of Alloys and Compounds 2021, 888: 161459. Sun, H.; Song, C.; Pang, Y.; Zheng, S.* Functional Design of Separator for Li-S Batteries[J]. Progress in Chemistry 2020, 32(9): 1402-1411. Ruan, J.#; Sun, H.#; Song, Y.; Pang, Y.; Yang, J.; Sun, D.; Zheng, S.* Constructing 1D/2D interwoven carbonous matrix to enable high-efficiency sulfur immobilization in Li-S battery[J] Energy Materials, 2021, 1(2): 100018. Jiang, B.#; Sun, H.#; Yuan, T.; He, W.; Zheng, C.; Zhang, H.-J.; Yang, J.; Zheng, S.* Framework-Derived Tungsten Single-Atom Catalyst for Oxygen Reduction Reaction[J]. Energy & Fuels 2021, 35(9): 8173-8180. Pang, Y.; Zhang, D.; Sun H.; Li, X.; Xia, S.; Yuan, T.; Chen, T.; Yang, J.; Wang, J.; Zheng, S.* Stable All-Solid-State Na Batteries Enabled by In Situ Formed Na─B─H─F Electrolyte. Advanced Energy Material 2023, 2301637. Wan, Z.; Chen, Z.; Chen, H.; Jiang, Y.; Zhang, J.; Wang, Y.; Wang, J.; Sun, H.; Zhu, Z.; Zhu, J.; Yang, L.; Ye, W.; Zhang, S.; Xie, X.; Zhang, Y.; Zhuang, X.; He, X.; Yang, J. XRD match: A Semi-Supervised Learning Framework to Efficiently Discover Room Temperature Lithium Superionic Conductors. Energy Environment Science 2024. Xia, S.-X.; Yan, Y.-H.; Sun, H.; Yang, J.-H.; Zheng, S.-Y.* Engineering Unique Vesicle Structured Tin Phosphides@P/N Co-Doped Carbon Anode for High-Performance Sodium/Lithium-Ion Batteries. Rare Metals 2022, 41, 1496-1503. Yang, B.; Xia, S.; Sun, H.; Zhang, X.; Pang, Y.; Yang, J.; Zheng, S.* Tailoring Layered-Double-Hydroxide Nanostructures toward Long-Lifespan and Fast Kinetics Lithium-Sulfur Batteries[J]. ACS Applied Energy Materials 2021, 4(10): 11752-11760. Yan, Y.; Xia, S.; Sun, H.; Pang, Y.; Yang, J.; Zheng, S.* A Promising 3D Crystalline Red P/Reduced Graphene Oxide Aerogel Architecture Anode for Sodium-Ion Batteries[J]. Chemical Engineering Journal 2020, 393: 124788. Zheng, Y.; Xia, S.; Dong, F.; Sun, H.; Pang, Y.; Yang, J.; Huang, Y.; Zheng, S.* High Performance Li Metal Anode Enabled by Robust Covalent Triazine Framework-Based Protective Layer[J]. Advanced Functional Materials 2021, 31(6): 2006159. Yan, Y.; Xia, S.; Sun, H.; Pang, Y.; Yang, J.; Zheng, S.* A Promising 3D Crystalline Red P/Reduced Graphene Oxide Aerogel Architecture Anode for Sodium-Ion Batteries. Chemical Engineering Journal 2020, 393. 孙皓,王安定,常春涛,门贺,王新敏,潘登*,Fe-Si-B-P-Mo系高磁感应强度非晶软磁合金,功能材料, 2015,46:04061-04065.
|