Mahadi Bahari

About Mahadi Bahari

Mahadi Bahari, With an exceptional h-index of 20 and a recent h-index of 20 (since 2020), a distinguished researcher at Universiti Teknologi Malaysia, specializes in the field of IS Adoption and Implementation, IS Healthcare, Electronic and Mobile Business, IS Education & Learning.

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

Kinetic Exploration of CO2 Methanation over Nickel Loaded on Fibrous Mesoporous Silica Nanoparticles (CHE-SM)

Silica-Based Materials in Methane Conversion: A Two-Decade Bibliometric and Literature Review (1995–2022)

nn heterojunction CdS/FST photoanode for enhanced photoelectrochemical water splitting

Optimizing hydrogen-driven n-pentane isomerization over Pt-doped fibrous ZSM-5

Driving Agricultural Transformation: Unraveling Key Factors Shaping IoT Adoption in Smart Farming with Empirical Insights

Integrating ZnO with fibrous silica zirconia pn heterojunction for effective photoredox of hexavalent chromium and congo red

Mechanistic studies of lower temperature isomerization of n-heptane over fibrous silica molybdenum catalyst

Methane dry reforming on fibrous silica-alumina employing nanocrystals of nickel and cobalt to recognize the most efficient metal

Mahadi Bahari Information

University

Position

Information Systems Azman Hashim International Business School

Citations(all)

1750

Citations(since 2020)

1589

Cited By

289

hIndex(all)

20

hIndex(since 2020)

20

i10Index(all)

43

i10Index(since 2020)

41

Email

University Profile Page

Google Scholar

Mahadi Bahari Skills & Research Interests

IS Adoption and Implementation

IS Healthcare

Electronic and Mobile Business

IS Education & Learning

Top articles of Mahadi Bahari

Kinetic Exploration of CO2 Methanation over Nickel Loaded on Fibrous Mesoporous Silica Nanoparticles (CHE-SM)

Process Safety and Environmental Protection

2024/4/16

Silica-Based Materials in Methane Conversion: A Two-Decade Bibliometric and Literature Review (1995–2022)

2024/4/4

nn heterojunction CdS/FST photoanode for enhanced photoelectrochemical water splitting

International Journal of Hydrogen Energy

2024/3/25

Optimizing hydrogen-driven n-pentane isomerization over Pt-doped fibrous ZSM-5

Molecular Catalysis

2024/3/15

Driving Agricultural Transformation: Unraveling Key Factors Shaping IoT Adoption in Smart Farming with Empirical Insights

Sustainability

2024/3/4

Integrating ZnO with fibrous silica zirconia pn heterojunction for effective photoredox of hexavalent chromium and congo red

Journal of Water Process Engineering

2024/3/1

Mechanistic studies of lower temperature isomerization of n-heptane over fibrous silica molybdenum catalyst

International Journal of Hydrogen Energy

2024/2/7

Methane dry reforming on fibrous silica-alumina employing nanocrystals of nickel and cobalt to recognize the most efficient metal

International Journal of Hydrogen Energy

2024/1/2

Properties-activity correlation of Nickel supported on fibrous Zeolite-Y for dry reforming of methane

International Journal of Hydrogen Energy

2024/1/2

Advancements in cadmium-based photoanodes for photoelectrochemical water splitting: A short review

2024

Non-noble metal catalysts for dry reforming of methane: Challenges, opportunities, and future directions

2024

Emerging Trends in Hydrogen and Synfuel Generation: A State-of-the-Art Review

2023/10/17

A comprehensive review on the advancements in catalyst regeneration strategies for enhanced reactivity in CO methanation

2023/10/1

Vanadia as an electron-hole recombination inhibitor on fibrous silica-titania for selective hole oxidation of ciprofloxacin and Congo red photodegradation

Chemosphere

2023/10/1

Recent review and evaluation of green hydrogen production via water electrolysis for a sustainable and clean energy society

2023/9/23

A review of recent modification strategies of TiO2-based photoanodes for efficient photoelectrochemical water splitting performance

2023/9/3

Advances in MXene-based Photoanodes for Water-splitting

2023/8/25

Corrigendum to ‘Ultra-high surface area fibrous silica-zirconia support for renewable energy production by CO2 methanation’[Molecular Catalysis 547 (2023) 113311]

Molecular Catalysis

2023/8/1

Ultra-high surface area fibrous silica-zirconia support for renewable energy production by CO2 methanation

Molecular Catalysis

2023/8/1

A bibliometric examination and state-of-the-art overview of hydrogen generation from photoelectrochemical water splitting

2023/6/1

See List of Professors in Mahadi Bahari University(Universiti Teknologi Malaysia)

Co-Authors

academic-engine