Santanu Mukherjee

Santanu Mukherjee

University of Louisville

H-index: 17

North America-United States

About Santanu Mukherjee

Santanu Mukherjee, With an exceptional h-index of 17 and a recent h-index of 16 (since 2020), a distinguished researcher at University of Louisville, specializes in the field of Sodium ion batteries, Lithium ion batteries, Solid state battery, Fuel cells, Electrochemical energy storage.

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

Transition Metal Dichalcogenides as Active Anode Materials for Sodium-Ion Batteries

Beyond flexible-Li-ion battery systems for soft electronics

Additive manufacturing of electrochemical energy storage systems electrodes

Free-standing bilayered vanadium oxide films synthesized by liquid exfoliation of chemically preintercalated δ-Li x V 2 O 5· n H 2 O

Growth and influence of a porous iron oxide nanolayer on LiMn2O4 in an aqueous rechargeable lithium‐ion battery

TMDs beyond MoS2 for Electrochemical Energy Storage

Assessing corrosion resistance of two-dimensional nanomaterial-based coatings on stainless steel substrates

Electrospun SiOC ceramic fiber mats as freestanding electrodes for electrochemical energy storage applications

Santanu Mukherjee Information

University

Position

Materials Electrochemist

Citations(all)

1644

Citations(since 2020)

1254

Cited By

891

hIndex(all)

17

hIndex(since 2020)

16

i10Index(all)

22

i10Index(since 2020)

17

Email

University Profile Page

Google Scholar

Santanu Mukherjee Skills & Research Interests

Sodium ion batteries

Lithium ion batteries

Solid state battery

Fuel cells

Electrochemical energy storage

Top articles of Santanu Mukherjee

Transition Metal Dichalcogenides as Active Anode Materials for Sodium-Ion Batteries

2023/1/31

Santanu Mukherjee
Santanu Mukherjee

H-Index: 12

Gurpreet Singh
Gurpreet Singh

H-Index: 18

Beyond flexible-Li-ion battery systems for soft electronics

2021/11/1

Santanu Mukherjee
Santanu Mukherjee

H-Index: 12

Additive manufacturing of electrochemical energy storage systems electrodes

2021/5

Free-standing bilayered vanadium oxide films synthesized by liquid exfoliation of chemically preintercalated δ-Li x V 2 O 5· n H 2 O

Materials Advances

2021

Growth and influence of a porous iron oxide nanolayer on LiMn2O4 in an aqueous rechargeable lithium‐ion battery

Energy Storage

2020/8

Santanu Mukherjee
Santanu Mukherjee

H-Index: 12

Alex Bates
Alex Bates

H-Index: 2

TMDs beyond MoS2 for Electrochemical Energy Storage

2020/5/20

Santanu Mukherjee
Santanu Mukherjee

H-Index: 12

Gurpreet Singh
Gurpreet Singh

H-Index: 18

Assessing corrosion resistance of two-dimensional nanomaterial-based coatings on stainless steel substrates

Royal Society Open Science

2020/4/29

Electrospun SiOC ceramic fiber mats as freestanding electrodes for electrochemical energy storage applications

Ceramics International

2020/2/15

Design, characterization, and application of elemental 2D materials for electrochemical energy storage, sensing, and catalysis

2020

The effect of chemically preintercalated alkali ions on the structure of layered titanates and their electrochemistry in aqueous energy storage systems

Journal of Materials Chemistry A

2020

Graphene-based hybrid materials for advanced batteries

2020/1/1

See List of Professors in Santanu Mukherjee University(University of Louisville)