Mike Tebyetekerwa

About Mike Tebyetekerwa

Mike Tebyetekerwa, With an exceptional h-index of 34 and a recent h-index of 34 (since 2020), a distinguished researcher at Australian National University, specializes in the field of 2D/Fibers and Devices, AIE, Optical Spectroscopy, Catalysis.

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

Electrode, Electrolyte, and Membrane Materials for Electrochemical CO2 Capture

Engineering 2D Photocatalysts for Solar Hydrogen Peroxide Production

Electricity generation from carbon dioxide adsorption by spatially nanoconfined ion separation

Confining Polymer Electrolyte in MOF for Safe and High‐Performance All‐Solid‐State Sodium Metal Batteries

Understanding the Electrochemical Extraction of Lithium from Ultradilute Solutions

Nickel-Rich Cathode Yarn for Wearable Lithium-Ion Batteries

Strategies Towards High-Performance Tin-Based Perovskite Solar Cells

Hybrid Alkali Salt Catalysts‐Promoted CVD Growth of 2D MoSe2–WSe2 and WSe2–MoSe2 Lateral Heterostructures

Mike Tebyetekerwa Information

University

Position

___

Citations(all)

3371

Citations(since 2020)

3289

Cited By

933

hIndex(all)

34

hIndex(since 2020)

34

i10Index(all)

66

i10Index(since 2020)

66

Email

University Profile Page

Google Scholar

Mike Tebyetekerwa Skills & Research Interests

2D/Fibers and Devices

AIE

Optical Spectroscopy

Catalysis

Top articles of Mike Tebyetekerwa

Electrode, Electrolyte, and Membrane Materials for Electrochemical CO2 Capture

2024/4/23

Engineering 2D Photocatalysts for Solar Hydrogen Peroxide Production

2024/4/3

Electricity generation from carbon dioxide adsorption by spatially nanoconfined ion separation

Nature communications

2024/3/26

Confining Polymer Electrolyte in MOF for Safe and High‐Performance All‐Solid‐State Sodium Metal Batteries

Angewandte Chemie

2024/2/19

Understanding the Electrochemical Extraction of Lithium from Ultradilute Solutions

Environmental Science & Technology

2024/2/17

Nickel-Rich Cathode Yarn for Wearable Lithium-Ion Batteries

Advanced Fiber Materials

2024/2/13

Strategies Towards High-Performance Tin-Based Perovskite Solar Cells

2024

Hybrid Alkali Salt Catalysts‐Promoted CVD Growth of 2D MoSe2–WSe2 and WSe2–MoSe2 Lateral Heterostructures

Advanced Materials Technologies

2023/6

Self-stratifying coating enables facile fabrication of robust superhydrophobic sponges for oil-water mixture separation

Progress in Organic Coatings

2023/6/12

Uganda Textile Education and Industry: The Current Status and Investment Opportunities

2023/7/3

Electrocapacitive Deionization: Mechanisms, Electrodes, and Cell Designs

2023/5

Mike Tebyetekerwa
Mike Tebyetekerwa

H-Index: 18

Chao Wang
Chao Wang

H-Index: 6

Xiwang Zhang
Xiwang Zhang

H-Index: 5

Interface challenges and optimization strategies for aqueous zinc-ion batteries

2023/2/1

Hanwen Liu
Hanwen Liu

H-Index: 1

Mike Tebyetekerwa
Mike Tebyetekerwa

H-Index: 18

Simulations of lead-free organic–inorganic perovskites under tensile/compressive loads and different force fields

Molecular Physics

2023/1/2

Few-layer MoS 2 nanosheets with and without silicon nanoparticles as anodes for lithium-ion batteries

Journal of Materials Chemistry A

2023

All room-temperature synthesis, N2 photofixation and reactivation over 2D cobalt oxides

Applied Catalysis B: Environmental

2022/5/1

Xinmao Yin
Xinmao Yin

H-Index: 15

Pengfei Cao
Pengfei Cao

H-Index: 3

Mike Tebyetekerwa
Mike Tebyetekerwa

H-Index: 18

Natural and industrial wastes for sustainable and renewable polymer composites

2022/4/1

Fabrication Techniques for Wearable Batteries

2022/3/23

The Role of Hydrothermal Carbonization in Sustainable Sodium‐Ion Battery Anodes

Advanced Energy Materials

2022/5

Photovoltaic Properties of Monolayer 2D Transition Metal Dichalcogenides

2022/2/23

Mike Tebyetekerwa
Mike Tebyetekerwa

H-Index: 18

Aggregation-induced emission molecules enable characterization of superhydrophobic coatings

Progress in Organic Coatings

2022/2/1

See List of Professors in Mike Tebyetekerwa University(Australian National University)

Co-Authors

academic-engine