Computational study on the adsorption of sodium and calcium on edge-functionalized graphene nanoribbons

AH Farokh Niaei, T Roman, T Hussain… - The Journal of …, 2019 - ACS Publications
Computational methods are used to show that graphene nanoribbons bind sodium (Na) and
calcium (Ca) more strongly than graphene sheets. The binding strength is further enhanced …

[引用][C] Computational study on the adsorption of sodium and calcium on edge-functionalized graphene nanoribbons

AH Farokh Niaei, T Roman… - The Journal of …, 2019 - espace.library.uq.edu.au
Computational methods are used to show that graphene nanoribbons bind sodium (Na) and
calcium (Ca) more strongly than graphene sheets. The binding strength is further enhanced …

Computational Study on the Adsorption of Sodium and Calcium on Edge-Functionalized Graphene Nanoribbons

AHF Niaei, T Roman, T Hussain… - The Journal of Physical …, 2019 - rune.une.edu.au
Computational methods are used to show that graphene nanoribbons bind sodium (Na) and
calcium (Ca) more strongly than graphene sheets. The binding strength is further enhanced …

Computational Study on the Adsorption of Sodium and Calcium on Edge-Functionalized Graphene Nanoribbons

AHF Niaei, T Roman, T Hussain… - Journal of Physical …, 2019 - researchnow.flinders.edu.au
Computational methods are used to show that graphene nanoribbons bind sodium (Na) and
calcium (Ca) more strongly than graphene sheets. The binding strength is further enhanced …

Computational Study on the Adsorption of Sodium and Calcium on Edge-Functionalized Graphene Nanoribbons

AHF Niaei, T Roman, T Hussain… - Journal of …, 2019 - research-repository.uwa.edu.au
Computational methods are used to show that graphene nanoribbons bind sodium (Na) and
calcium (Ca) more strongly than graphene sheets. The binding strength is further enhanced …

[引用][C] Computational Study on the Adsorption of Sodium and Calcium on Edge-Functionalized Graphene Nanoribbons

AHF Niaei, T Roman, T Hussain, DJ Searles - 2019