Leela Mohana Reddy Arava

Leela Mohana Reddy Arava

Wayne State University

H-index: 53

North America-United States

About Leela Mohana Reddy Arava

Leela Mohana Reddy Arava, With an exceptional h-index of 53 and a recent h-index of 39 (since 2020), a distinguished researcher at Wayne State University, specializes in the field of Advanced Functional Nanomaterials, High-temperature Microbatteries and Supercapacitors, Li-S & Li-O2 Chemistries, Fuel Cells.

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

Method for fabricating wafer scale/nano submicron gap electrodes and arrays via photolithography

HIGH TEMPERATURE LITHIUM-ION BATTERY AND METHOD OF MAKING SAME

Systems, methods and computer program products for charging autonomous wireless sensors in subsurface environments

Rechargeable batteries using ionic liquid based electrolytes

Special Section on 2D Materials for Electrochemical Energy Storage and Conversion

Regulating Li‐Ion Transport through Ultrathin Molecular Membrane to Enable High‐Performance All‐Solid‐State–Battery

Method for fabricating wafer scale/nano sub micron gap electrodes and arrays via photolithography

Inhibition of lithium dendrite growth using ultra-thin sub-nanometer porous carbon nanomembrane in conventional and solid-state lithium-ion batteries

Leela Mohana Reddy Arava Information

University

Position

Associate Professor of Mechanical Engineering

Citations(all)

15411

Citations(since 2020)

6454

Cited By

12007

hIndex(all)

53

hIndex(since 2020)

39

i10Index(all)

108

i10Index(since 2020)

85

Email

University Profile Page

Wayne State University

Google Scholar

View Google Scholar Profile

Leela Mohana Reddy Arava Skills & Research Interests

Advanced Functional Nanomaterials

High-temperature Microbatteries and Supercapacitors

Li-S & Li-O2 Chemistries

Fuel Cells

Top articles of Leela Mohana Reddy Arava

Title

Journal

Author(s)

Publication Date

Method for fabricating wafer scale/nano submicron gap electrodes and arrays via photolithography

2024/4/11

HIGH TEMPERATURE LITHIUM-ION BATTERY AND METHOD OF MAKING SAME

2024/2/29

Systems, methods and computer program products for charging autonomous wireless sensors in subsurface environments

2008/8/7

Rechargeable batteries using ionic liquid based electrolytes

2023/6/29

Special Section on 2D Materials for Electrochemical Energy Storage and Conversion

Journal of Electrochemical Energy Conversion and Storage

Leela Mohana Reddy Arava

Dibakar Datta

Wilson KS Chiu

2023/5/1

Regulating Li‐Ion Transport through Ultrathin Molecular Membrane to Enable High‐Performance All‐Solid‐State–Battery

Small

Sathish Rajendran

Antony George

Zian Tang

Christof Neumann

Andrey Turchanin

...

2023/11

Method for fabricating wafer scale/nano sub micron gap electrodes and arrays via photolithography

2023/10/10

Inhibition of lithium dendrite growth using ultra-thin sub-nanometer porous carbon nanomembrane in conventional and solid-state lithium-ion batteries

2023/7/13

(Invited, Digital Presentation) Fundamental Understanding and Challenges in Cathode Materials for Next Generation Li-Ion Batteries

Electrochemical Society Meeting Abstracts 241

Leela Arava

2022/7/7

Nanoscale visualization of reversible redox pathways in lithium-sulfur battery using in situ AFM-SECM

Journal of The Electrochemical Society

Naresh Kumar Thangavel

Kiran Mahankali

Leela Mohana Reddy Arava

2022/6/1

Unveiling the Electrocatalytic Activity of 1T′-MoSe2 on Lithium-Polysulfide Conversion Reactions

ACS Applied Materials & Interfaces

Kiran Mahankali

Sundeep Varma Gottumukkala

Nirul Masurkar

Naresh Kumar Thangavel

Rahul Jayan

...

2022/5/18

Binder free silicon electrodes for lithium ion battery operability

2022/10/11

Depth-dependent understanding of cathode electrolyte interphase (CEI) on the layered Li-ion cathodes operated at extreme high temperature

Chemistry of Materials

Sudhan Nagarajan

Conan Weiland

Sooyeon Hwang

Mahalingam Balasubramanian

Leela Mohana Reddy Arava

2022/5/3

Investigating Mixed Cationic and Anionic Redox Chemistry in Chalcogen Based Cathodes for Li-Ion Batteries

Electrochemical Society Meeting Abstracts 242

Sudhan Nagarajan

Sooyeon Hwang

Mahalingam Balasubramanian

Naresh Kumar Thangavel

Leela Mohana Reddy Arava

2022/10/9

Stabilizing garnet-type solid-state electrolytes through atomic layer deposition of ultra-thin layered materials and methods of making same

2022/8/25

Inhibition of Lithium Dendrite Formation in Lithium Metal Batteries via Regulated Cation Transport through Ultrathin Sub‐Nanometer Porous Carbon Nanomembranes

Advanced Energy Materials

Sathish Rajendran

Zian Tang

Antony George

Andrew Cannon

Christof Neumann

...

2021/8

All-Solid-State Battery Using Interface Engineering of Garnet-Type Solid Electrolytes

Electrochemical Society Meeting Abstracts 240

Sathish Rajendran

Aparna Pilli

Olatomide Omolere

Jeffry Kelber

Leela Mohana Reddy Arava

2021/10/19

An all-solid-state battery with a tailored electrode–electrolyte interface using surface chemistry and interlayer-based approaches

Chemistry of Materials

Sathish Rajendran

Aparna Pilli

Olatomide Omolere

Jeffry Kelber

Leela Mohana Reddy Arava

2021/4/26

Anisotropic mass transport using ionic liquid crystalline electrolytes to suppress lithium dendrite growth

Sustainable Energy & Fuels

Deepesh Gopalakrishnan

Samia Alkatie

Andrew Cannon

Sathish Rajendran

Naresh Kumar Thangavel

...

2021

Fabrication of micro/millimeter-scale power sources and the process flow therefor

2021/9/16

See List of Professors in Leela Mohana Reddy Arava University(Wayne State University)

Co-Authors

H-index: 118
Zheng Liu

Zheng Liu

Nanyang Technological University

H-index: 80
Lijie Ci,

Lijie Ci,

Shandong University

H-index: 11
Sathish Rajendran

Sathish Rajendran

Wayne State University

H-index: 11
Nirul Masurkar

Nirul Masurkar

Harvard University

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