سیویلیکا را در شبکه های اجتماعی دنبال نمایید.

Ab initio calculations of Li, Na, Al and Mg adsorption on graphene anode of metal-ion batteries

Publish Year: 1396
Type: Conference paper
Language: English
View: 435

متن کامل این Paper منتشر نشده است و فقط به صورت چکیده یا چکیده مبسوط در پایگاه موجود می باشد.
توضیح: معمولا کلیه مقالاتی که کمتر از ۵ صفحه باشند در پایگاه سیویلیکا اصل Paper (فول تکست) محسوب نمی شوند و فقط کاربران عضو بدون کسر اعتبار می توانند فایل آنها را دانلود نمایند.

Export:

Link to this Paper:

Document National Code:

CHCONF05_402

Index date: 23 June 2018

Ab initio calculations of Li, Na, Al and Mg adsorption on graphene anode of metal-ion batteries abstract

Lithium, sodium, magnesium and aluminium metals were introduced onto hollow position of defect-free graphene to examine the adsorption of metals on graphene as an anodic material in metal-ion batteries using first principles calculations. All calculations were performed using density functional theory (DFT). Geometry optimizations, frequency calculations and single point energies were carried out with the M06-2X density functional. At hollow position, graphene tends to storage lithium and aluminum metals more than two other metals. The adsorption of metal on graphene reduces band gap of compound relative to pure graphene.

Ab initio calculations of Li, Na, Al and Mg adsorption on graphene anode of metal-ion batteries Keywords:

Ab initio calculations of Li, Na, Al and Mg adsorption on graphene anode of metal-ion batteries authors

Mohammad Mohsen Loghavi

Institute of Mechanics, Iranian Space Research Center, Shiraz, Iran