Binayak Roy

Binayak Roy

Monash University

H-index: 12

Oceania-Australia

About Binayak Roy

Binayak Roy, With an exceptional h-index of 12 and a recent h-index of 12 (since 2020), a distinguished researcher at Monash University, specializes in the field of Energy storage, boron chemistry, ionic liquids.

His recent articles reflect a diverse array of research interests and contributions to the field:

Developing a high‐performing spinel LiMn2O4 cathode material with unique morphology, fast cycling and scaled manufacture

Unexpected Energy Applications of Ionic Liquids

Extreme fast charging and stable cycling of LiMn2O4–Li4Ti5O12 lithium batteries by suppression of cathode phase changes

A high-performing spinel LiMn2O4 cathode material with unique morphology and scaled manufacture

High-Ionicity Electrolytes Based on Bulky Fluoroborate Anions for Stable Na-Metal Cycling

Recent strategies for improving the performance of ionic liquids as battery electrolytes

High-Performance Magnesium Electrochemical Cycling with Hybrid Mg–Li Electrolytes

Interphase control for high performance lithium metal batteries using ether aided ionic liquid electrolyte

Binayak Roy Information

University

Position

Research fellow School of Chemistry

Citations(all)

407

Citations(since 2020)

332

Cited By

228

hIndex(all)

12

hIndex(since 2020)

12

i10Index(all)

14

i10Index(since 2020)

12

Email

University Profile Page

Google Scholar

Binayak Roy Skills & Research Interests

Energy storage

boron chemistry

ionic liquids

Top articles of Binayak Roy

Developing a high‐performing spinel LiMn2O4 cathode material with unique morphology, fast cycling and scaled manufacture

Batteries & Supercaps

2024/4

Unexpected Energy Applications of Ionic Liquids

2024/2/27

Extreme fast charging and stable cycling of LiMn2O4–Li4Ti5O12 lithium batteries by suppression of cathode phase changes

2023/12/21

High-Ionicity Electrolytes Based on Bulky Fluoroborate Anions for Stable Na-Metal Cycling

The Journal of Physical Chemistry C

2022/10/31

Recent strategies for improving the performance of ionic liquids as battery electrolytes

2022/10/1

Binayak Roy
Binayak Roy

H-Index: 9

Urbi Pal
Urbi Pal

H-Index: 4

High-Performance Magnesium Electrochemical Cycling with Hybrid Mg–Li Electrolytes

ACS Applied Materials & Interfaces

2022/7/25

Binayak Roy
Binayak Roy

H-Index: 9

Interphase control for high performance lithium metal batteries using ether aided ionic liquid electrolyte

Energy & Environmental Science

2022

Metal-free rapid dehydrogenation kinetics and better regeneration yield of ammonia borane

International Journal of Hydrogen Energy

2021/7/9

Interphase control in lithium metal batteries through electrolyte design

2021/3/22

Regeneration of supported ammonia borane to achieve higher yield

ChemistrySelect

2021/2/10

Exploring the homopolar dehydrocoupling of ammonia borane by solid-state multinuclear NMR spectroscopy

Chemical Communications

2021

Lithium Borate Ester Salts for Electrolyte Application in Next-Generation High Voltage Lithium Batteries

Advanced Energy Materials

2021/9

Enhanced ion transport in an ether aided super concentrated ionic liquid electrolyte for long-life practical lithium metal battery applications

Journal of Materials Chemistry A

2020

See List of Professors in Binayak Roy University(Monash University)