古华宇

  “骏马计划”研究员

  办公室:南校区太阳集团tyc138221

  邮箱:huayu.gu@imu.edu.cn





教育背景

2015-2018内蒙古大学化学化工学院,获理学硕士学位

2018-2022华中师范大学化学学院,获理学博士学位


工作经历

2023-2026:新加坡         南洋理工大学       博士后

2026至今:ok138cn太阳集团    太阳集团tyc138      研究员


研究领域

1. 利用传统热催化技术,针对大气污染物(VOCs)进行矿化处理;

2. 基于碳中和目标,致力于大气中CO2的资源化利用;


教学

主讲太阳集团tyc138本科生《物化基础实验》课程


研究项目

1.ok138cn太阳集团“骏马计划”高层次人才科研启动金,2026-2031,主持


代表性成果

学术论文:

1.Huayu Gu; Fanyu Wang; Sai Chen; Jintong Lan; Jun Wang; Chunlei Pei; Xiao Liu; Jinlong Gong; Suppressing Jahn-Teller distortion of MnO2 via B-Ni dual single-atoms integration for methane catalytic combustion, Nature Communications, 2025, 16(1).

2.Huayu Gu; Xiao Liu; Xiufan Liu; Cancan Ling; Kai Wei; Guangming Zhan; Yanbing Guo; Lizhi Zhang; Adjacent single-atom irons boosting molecular oxygen activation on MnO2, Nature Communications, 2021, 12(1).

3.Huayu Gu; Bing Zhu; Yuanyuan Wang; Okkyun Seo; Ziyang Toh; Daiju Mastumura; Jiayi Tang; Fanfei Sun; Dongshuang Wu; Suppressing reductive deactivation of Fe2O3 via In-O-Fe motif formation for CO2 hydrogenation, Angewandte Chemie International Edition, 2026, e4720181.

4.Huayu Gu; Jintong Lan; Hongqi Shi; Bo Xie; Zhihui Ai; Lizhi Zhang; Xiao Liu; Channel Confinement Enables K Species with Rich Electrons in α-MnO2 for Water Molecules Activation, Advanced Functional Materials, 2024, 34(18).

5.Huayu Gu; Jintong Lan; Yi Liu; Cancan Ling; Kai Wei; Guangming Zhan; Furong Guo; Falong Jia; Zhihui Ai; Lizhi Zhang; Hua Wang; Water Enables Lattice Oxygen Activation of Transition Metal Oxides for Volatile Organic Compound Oxidation, ACS Catalysis, 2022, 12(18): 11272-11280.

6.Huayu Gu; Jintong Lan; Haolu Hu; Falong Jia; Zhihui Ai; Lizhi Zhang; Xiao Liu; Surface oxygen vacancy-dependent molecular oxygen activation for propane combustion over α-MnO2, Journal of Hazardous Materials, 2023, 460: 132499.

7.Huayu Gu; Dongshuang Wu; Unveiling the support LUMO-activity correlation in single-atom catalysis, Chem catalysis, 2025, 5(6).

8.Huayu Gu; Dongshuang Wu; Catalyst design strategies to overcome temperature constrained relationship in CO2-to-methanol conversion, Chemical Engineering Journal, 2025,524,169121.