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Nawaf Albeladi
Nawaf Albeladi
School of Chemistry, University of Nottingham and Taibah University
在 taibahu.edu.sa 的电子邮件经过验证
标题
引用次数
引用次数
年份
Thermal behavior, sintering and mechanical characterization of multiple ion-substituted hydroxyapatite bioceramics
M Hidouri, SV Dorozhkin, N Albeladi
Journal of Inorganic and Organometallic Polymers and Materials 29, 87-100, 2019
462019
Lanthanum-neodymium-co-substituted calcium fluorobritholites
M Hidouri, N Albeladi
Journal of Materials Science and Chemical Engineering 6 (7), 151-162, 2018
52018
Ultra-high surface area ionic-liquid-derived carbons that meet both gravimetric and volumetric methane storage targets
N Albeladi, LS Blankenship, R Mokaya
Energy & Environmental Science 17 (9), 3060-3076, 2024
32024
Synthesis and Characterization of Doped Magnesium Hydroxide for Medium Heat Storage Application
N Albeladi, A Kur, R Mokaya, J Darkwa, S Roger-Lund, M Worall, ...
Materials 16 (18), 6296, 2023
22023
Brute force determination of the optimum pore sizes for CO 2 uptake in turbostratic carbons
LS Blankenship, N Albeladi, T Alkhaldi, A Madkhali, R Mokaya
Energy Advances 1 (12), 1009-1020, 2022
22022
Modulating the porosity of N-doped carbon materials for enhanced CO 2 capture and methane uptake
N Albeladi, R Mokaya
Journal of Materials Chemistry A, 2024
2024
Brute force determination of the optimum pore sizes for CO2 uptake
LS Blankenship, N Albeladi, T Alkhaldi, A Madkhali, R Mokaya
2022
A FACILE METHOD TO SYNTHESIZE BI-FUNCTIONAL NANOSTRUCTURED NICKEL COMPOUNDS FOR ENERGY STORAGE AND WATER SPLITTING APPLICATIONS
N Albeladi
2018
Rational Synthesis of Activated Carbons for Enhanced CO2 Uptake and Methane Storage
N Albeladi
University of Nottingham, 0
Brute force determination of the optimum pore sizes for CO
LS Blankenship, N Albeladi, T Alkhaldi, A Madkhali, R Mokayaa
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