Options
Green synthesis of boron doped graphene and its application as high performance anode material in Li ion battery
Date Issued
01-01-2015
Author(s)
Sahoo, Madhumita
Sreena, K. P.
Vinayan, B. P.
Indian Institute of Technology, Madras
Abstract
The present work demonstrates a facile route for the large-scale, catalyst free, and green synthesis approach of boron doped graphene (B-G) and its use as high performance anode material for Li ion battery (LIB) application. Boron atoms were doped into graphene framework with an atomic percentage of 5.93% via hydrogen induced thermal reduction technique using graphite oxide and boric acid as precursors. Various characterization techniques were used to confirm the boron doping in graphene sheets. B-G as anode material shows a discharge capacity of 548 mAh g-1 at 100 mA g-1 after 30th cycles. At high current density value of 1 A g-1, B-G as anode material enhances the specific capacity by about 1.7 times compared to pristine graphene. The present study shows a simplistic way of boron doping in graphene leading to an enhanced Li ion adsorption due to the change in electronic states.
Volume
61