Haobo Li

About Haobo Li

Haobo Li, With an exceptional h-index of 32 and a recent h-index of 31 (since 2020), a distinguished researcher at Technische Universität München, specializes in the field of AI-Driven Energy Catalysis.

His recent articles reflect a diverse array of research interests and contributions to the field:

Interfacial Engineering of Zn Metal via a Localized Conjugated Layer for Highly Reversible Aqueous Zinc Ion Battery

Interpretable machine learning-assisted screening of perovskite oxides

Enhancing electrochemical methane coupling in solid oxide cells by tuning oxygen species in the catalyst

Machine Learning Confirms the Formation Mechanism of a Single-Atom Catalyst via Infrared Spectroscopic Analysis

Atomic Engineering Modulates Oxygen Reduction of Hollow Carbon Matrix Confined Single Metal‐Nitrogen Sites for Zinc‐Air Batteries

Active-learning accelerated computational screening of A2B@ NG catalysts for CO2 electrochemical reduction

Activity and Selectivity Roadmap for C–N Electro-Coupling on MXenes

C2+ Selectivity for CO2 Electroreduction on Oxidized Cu-Based Catalysts

Haobo Li Information

University

Position

Postdoc

Citations(all)

7991

Citations(since 2020)

6675

Cited By

4055

hIndex(all)

32

hIndex(since 2020)

31

i10Index(all)

45

i10Index(since 2020)

42

Email

University Profile Page

Google Scholar

Haobo Li Skills & Research Interests

AI-Driven Energy Catalysis

Top articles of Haobo Li

Interfacial Engineering of Zn Metal via a Localized Conjugated Layer for Highly Reversible Aqueous Zinc Ion Battery

Angewandte Chemie

2024/2/2

Interpretable machine learning-assisted screening of perovskite oxides

RSC advances

2024

Enhancing electrochemical methane coupling in solid oxide cells by tuning oxygen species in the catalyst

Journal of Materials Chemistry A

2024

Machine Learning Confirms the Formation Mechanism of a Single-Atom Catalyst via Infrared Spectroscopic Analysis

The Journal of Physical Chemistry Letters

2023/12/4

Atomic Engineering Modulates Oxygen Reduction of Hollow Carbon Matrix Confined Single Metal‐Nitrogen Sites for Zinc‐Air Batteries

Small

2023/11

Active-learning accelerated computational screening of A2B@ NG catalysts for CO2 electrochemical reduction

Nano Energy

2023/10/1

Activity and Selectivity Roadmap for C–N Electro-Coupling on MXenes

Journal of the American Chemical Society

2023/7/6

Haobo Li
Haobo Li

H-Index: 24

Yan Jiao
Yan Jiao

H-Index: 14

C2+ Selectivity for CO2 Electroreduction on Oxidized Cu-Based Catalysts

Journal of the American Chemical Society

2023/6/21

Acidic CO2-to-HCOOH electrolysis with industrial-level current on phase engineered tin sulfide

Nature Communications

2023/5/18

Electroreduction of CO2 in a Non-aqueous Electrolyte─The Generic Role of Acetonitrile

ACS catalysis

2023/4/13

Haobo Li
Haobo Li

H-Index: 24

Daniel Winkler
Daniel Winkler

H-Index: 1

Boosted Photoreforming of Plastic Waste via Defect-Rich NiPS3 Nanosheets

Journal of the American Chemical Society

2023/3/13

Data‐Driven Machine Learning for Understanding Surface Structures of Heterogeneous Catalysts

2023/2/20

Haobo Li
Haobo Li

H-Index: 24

Yan Jiao
Yan Jiao

H-Index: 14

Unlocking the performance of ternary metal (hydro) oxide amorphous catalysts via data-driven active-site engineering

2023/5/10

Tailoring acidic microenvironments for carbon-efficient CO 2 electrolysis over a Ni–N–C catalyst in a membrane electrode assembly electrolyzer

Energy & Environmental Science

2023

In situ growth dynamics of uniform bilayer graphene with different twisted angles following layer-by-layer mode

The Journal of Physical Chemistry Letters

2022/11/29

Ab initio thermodynamic stability of carbide catalysts under electrochemical conditions

ACS Catalysis

2022/8/10

Haobo Li
Haobo Li

H-Index: 24

MXene analogue: a 2D nitridene solid solution for high‐rate hydrogen production

Angewandte Chemie

2022/7/4

Unconventional direct synthesis of Ni 3 N/Ni with N-vacancies for efficient and stable hydrogen evolution

Energy & Environmental Science

2022

Temperature‐Dependent CO2 Electroreduction over Fe‐N‐C and Ni‐N‐C Single‐Atom Catalysts

Angewandte Chemie

2021/12/13

Subgroup Discovery Points to the Prominent Role of Charge Transfer in Breaking Nitrogen Scaling Relations at Single-Atom Catalysts on VS2

ACS Catalysis

2021/6/16

Haobo Li
Haobo Li

H-Index: 24

Ke Chen
Ke Chen

H-Index: 6

See List of Professors in Haobo Li University(Technische Universität München)