Oxygen-rich microporous carbons with exceptional hydrogen storage capacity LS Blankenship, N Balahmar, R Mokaya Nature Communications 12 (1), 1546, 2017 | 266 | 2017 |
Cigarette butt-derived carbons have ultra-high surface area and unprecedented hydrogen storage capacity LS Blankenship, R Mokaya Energy & Environmental Science 10 (12), 2552-2562, 2017 | 212 | 2017 |
Modulating the porosity of carbons for improved adsorption of hydrogen, carbon dioxide, and methane: A review LS Blankenship, R Mokaya Materials Advances 3, 1905-1930, 2022 | 43 | 2022 |
Confirmation of pore formation mechanisms in biochars and activated carbons by dual isotherm analysis LS Blankenship, J Jagiello, R Mokaya Materials Advances 3, 3961-3971, 2022 | 16 | 2022 |
Porous hollow TiO 2 microparticles for photocatalysis: exploiting novel ABC triblock terpolymer templates synthesised in supercritical CO 2 RR Larder, TM Bennett, LS Blankenship, JA Fernandes, BK Husband, ... Polymer Chemistry 12 (19), 2904-2913, 2021 | 10 | 2021 |
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 | 4 | 2024 |
A simple, sustainable route to flexible microporous carbon cloth for energy storage applications T Alkhaldi, LS Blankenship, R Mokaya Materials Advances 4, 3559-3571, 2023 | 2 | 2023 |
Brute force determination of the optimum pore sizes for CO2 uptake in turbostratic carbons LS Blankenship, N Albeladi, T Alkhaldi, A Madkhali, R Mokaya Energy Advances 1 (12), 1009-1020, 2022 | 2 | 2022 |
Understanding the relationship between synthetic conditions, porosity and CO2 uptake capacity of turbostratic carbons LS Blankenship University of Nottingham, 2023 | | 2023 |