论文专著
[1] Rouna Jia, Zongyan Liu, Yang Wang*, Jingyang Zhao, Zhong Huang, Wen Yue, Haozhi Wang*, Kaiping Yu, Mingxin Huang, Yida Deng*, Frontier-Orbital
Modulation of Rhodium Single-Atom Catalysts for Enhanced Hydrogen Evolution, Nature Communications 2026.
[2] Yingying Xu, Zhaoyang Shi, Shicheng Zhu, Yingxia Zhao, Ming Sun, Haozhi Wang*, Yida Deng, Tianyou Zhai, Lin Yu*, Youwen Liu*, Electrified
Interfacial Oxygen-Down Water Boosts Efficient and Durable Electrolysis, Nature Communications 2026, 17, 4304.
[3] Yuan Liu, Zihan Shen, Zexiang Yin, Heng Zhao, Jiayi Qin, Yang Wang, Yaqiong Su, Haozhi Wang*, Wenbin Hu, Zhichuan J. Xu*, Yida Deng*,
High-Throughput Theoretical Screening of Single-Atom Catalysts for Electrochemical Urea Synthesis. Angewandte Chemie International Edition 2026,
65, e16299.
[4] Tao Zhang, Wanqing Song, Xin Wang, Panzhe Qiao*, Jiahui Feng, Huachen Shi, Haozhi Wang*, Xinyi Yang, Jinfeng Zhang, Jia Ding*, Wenbin Hu*,
Lattice coupling enables gradient strain tuning toward platinum skin at intermetallic nanocatalysts for boosting hydrogen electrocatalysis,
Advanced Materials 2026, 38, e11865.
[5] Tingting Cui, Yuchao Wang, Rufan Xu, Mengyang Duan, Yanming Yu, Longqian Wang, Guanjie Li, Haiming Han, Haozhi Wang*, Yunchuan Tu*, Yongpeng
Lei*, Ming Xu*, Dingsheng Wang, Metalloid Coordination Reinforcing Electronic Synergy in Dual Atom Sites for Large-scale CO2 Electrolysis, Angewandte
Chemie International Edition 2026, 65, e16353.
[6] Xiaolin Hu*, Wenping Tian, Shiyue Zhang, Yutao Guo, Haozhi Wang*, Yida Deng*, Atomically Dispersed Au Single Atoms Coupled with Clusters on ZrO2
as High-Efficiency Bifunctional Electrocatalysts for Zinc-Air Batteries, Angewandte Chemie International Edition 2026, 65, e19640.
[7] Defeng Qi, Hao Zhang, Gonglei Shao, Chaolong Wang, Yubin Peng, Haozhi Wang*, Yanshuai Li, Huile Jin, Jun Luo, Shun Wang*, Jie Xu*, Yifei Yuan*,
Fluorine-Mediated Engineering of Stable High-Valence Single Atom Catalysts, Angewandte Chemie International Edition 2026, 65, e1641171.
[8] Xiaorui Liu, Jianghao Liang, Ziyi Wang, Qingyu Li, Yida Deng * and Haozhi Wang *, Building Catalysts Exploration Highway Through the Integration
of High-Throughput and Machine Learning Technologies, Advanced Energy Materials 2026, 16, e05497.
[9] Yuan Liu, Xixi Ren, Jiajun Wang, Haozhi Wang*, Zexiang Yin, Yang Wang, Wenjie Huang, Xiaolin Hu, Zhichuan J. Xu*, Yida Deng*, Spin state effect
of tetrahedron-coordinated single atom catalysts on CO2 electroreduction, Journal of the American Chemical Society 2025, 147, 20318−20328. (Highly
cited paper)
[10]Yingmei Bian, Yanxi Wang, Zijun Yang, Zexiang Yin, Heng Zhao, Yuan Liu, Hainan Shi*, Yaqiong Su, Yida Deng*, Haozhi Wang*, Accelerating the
Prediction of g-C3N4-Supported Dual-Atom Catalysts for Photocatalytic CO2 Reduction to CO and HCOOH: A Machine Learning and DFT Combined Approach.
Advanced Energy Materials 2025, 15, e03855.
[11]Wanqing Song, Xinyi Yang, Tao Zhang, Zechuan Huang, Haozhi Wang*, Jie Sun, Yunhua Xu, Jia Ding*, Wenbin Hu*, Optimizing potassium polysulfides
for high performance potassium-sulfur batteries. Nature Communications 2024, 15, 1005.
[12]Hainan Shi, Yan Liang, Jungang Hou, Haozhi Wang*, Zhenghao Jia, Jiaming Wu, Fei Song*, Hong Yang*, Xinwen Guo*, Boosting solar-driven CO2
conversion to ethanol via single-atom catalyst with defected low-coordination Cu-N2 motif. Angewandte Chemie International Edition 2024, 63,
02404884.
[13]Jiangfeng Lin, Jingnan Ding, Haozhi Wang*, Xinyi Yang, Xuerong Zheng, Zechuan Huang, Wanqing Song, Jia Ding*, Xiaopeng Han*, Wenbin Hu, Boosting
energy efficiency and stability of Li-CO2 battery via synergy between Ru atom cluster and single atom Ru-N4 site in electrocatalyst cathode, Advanced Materials 2022, 34, 2200559.
(Highly cited paper)
专利
1. 邓意达,王浩志,杨紫君,殷泽翔,王杨 一种高熵合金催化剂组分优化方法,2025-01-15,CN202510057681.3;
2. 邓意达,王浩志,岳亮,殷琦,杨紫君,王杨 高性能电解海水高熵氧化物人工智能预测算法系统,2025-03-07,2025SR0406331;
3. 邓意达,王浩志,殷琦,岳亮,杨紫君,王杨 高熵合金催化剂人工智能预测平台,2025-03-19,2025SR0486076。
学术奖励
入选中科协优秀中外青年交流计划,荣获Journal of Materials Chemistry A 2025 Emerging Investigators、Advanced Powder Materials 2025 Emerging Investigators称号。