Amir Lashgari

Amir Lashgari

University of Cincinnati

H-index: 13

North America-United States

About Amir Lashgari

Amir Lashgari, With an exceptional h-index of 13 and a recent h-index of 12 (since 2020), a distinguished researcher at University of Cincinnati, specializes in the field of Energy Storage Materials, Lithium-ion Battery, Polymer Synthesis, Graphene.

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

Development of high-voltage and high-energy membrane-free nonaqueous lithium-based organic redox flow batteries

Tetrathiafulvalene (TTF) derivatives as catholytes for dual-type redox flow batteries: molecular engineering enables high energy density and cyclability

Developing Redox-Active Organic Materials for Redox Flow Batteries

A Membrane-Free, Aqueous/Nonaqueous Hybrid Redox Flow Battery

Two-electron-active Tetracyanoethylene for Nonaqueous Redox Flow Batteries

Electrocatalytic Dechlorination of Dichloromethane in Water Using a Heterogenized Molecular Copper Complex

Biphasic, Membrane-Free Zn/Phenothiazine Battery: Effects of Hydrophobicity of Redox Materials on Cyclability

Hydrodechlorination of Dichloromethane by a Metal-Free Triazole-Porphyrin Electrocatalyst: Demonstration of Main-Group Element Electrocatalysis

Amir Lashgari Information

University

Position

USA

Citations(all)

391

Citations(since 2020)

363

Cited By

82

hIndex(all)

13

hIndex(since 2020)

12

i10Index(all)

15

i10Index(since 2020)

14

Email

University Profile Page

Google Scholar

Amir Lashgari Skills & Research Interests

Energy Storage Materials

Lithium-ion Battery

Polymer Synthesis

Graphene

Top articles of Amir Lashgari

Development of high-voltage and high-energy membrane-free nonaqueous lithium-based organic redox flow batteries

Nature Communications

2023/8/8

Tetrathiafulvalene (TTF) derivatives as catholytes for dual-type redox flow batteries: molecular engineering enables high energy density and cyclability

Journal of Materials Chemistry A

2023

Developing Redox-Active Organic Materials for Redox Flow Batteries

2022

Amir Lashgari
Amir Lashgari

H-Index: 5

A Membrane-Free, Aqueous/Nonaqueous Hybrid Redox Flow Battery

Energy Storage Materials

2022

Xiao Wang
Xiao Wang

H-Index: 4

Amir Lashgari
Amir Lashgari

H-Index: 5

Two-electron-active Tetracyanoethylene for Nonaqueous Redox Flow Batteries

Journal of Materials Chemistry A

2021/4/23

Electrocatalytic Dechlorination of Dichloromethane in Water Using a Heterogenized Molecular Copper Complex

Inorganic Chemistry

2021/3/18

Amir Lashgari
Amir Lashgari

H-Index: 5

Biphasic, Membrane-Free Zn/Phenothiazine Battery: Effects of Hydrophobicity of Redox Materials on Cyclability

ACS Materials Letters

2021/3/3

Amir Lashgari
Amir Lashgari

H-Index: 5

Xiao Wang
Xiao Wang

H-Index: 4

Hydrodechlorination of Dichloromethane by a Metal-Free Triazole-Porphyrin Electrocatalyst: Demonstration of Main-Group Element Electrocatalysis

Chemistry–A European Journal

2021/1/21

Azobenzene‐based Low‐potential Anolyte for Nonaqueous Organic Redox Flow Battery

ChemElectroChem

2021/1/4

Xiao Wang
Xiao Wang

H-Index: 4

Amir Lashgari
Amir Lashgari

H-Index: 5

Electroactive Materials for Next-Generation Redox Flow Batteries: From Inorganic to Organic

2020/11/23

Amir Lashgari
Amir Lashgari

H-Index: 5

Enhanced Electrocatalytic Activity of a Zinc Porphyrin for CO2 Reduction: Cooperative Effects of Triazole Units in the Second Coordination Sphere

Chemistry–A European Journal

2020/7/23

Amir Lashgari
Amir Lashgari

H-Index: 5

Yueshen Wu
Yueshen Wu

H-Index: 16

A pH-Neutral, Aqueous Redox Flow Battery with a 3600-Cycle Lifetime: Micellization-Enabled Ultrastability and Crossover Suppression

ChemSusChem

2020/7/13

Xiao Wang
Xiao Wang

H-Index: 4

Amir Lashgari
Amir Lashgari

H-Index: 5

Atropisomeric Effects of Second Coordination Spheres on Electrocatalytic CO2 Reduction

ChemCatChem

2020/6/22

Amir Lashgari
Amir Lashgari

H-Index: 5

Extending the Redox Potentials of Metal-Free Anolytes: towards High Energy Density Redox Flow Batteries

Journal of the Electrochemical Society

2020/6/19

Amir Lashgari
Amir Lashgari

H-Index: 5

Xiao Wang
Xiao Wang

H-Index: 4

Enhanced Molecular CO2 Electroreduction Enabled by a Flexible Hydrophilic Channel for Relay Proton Shuttling

ChemSusChem

2020/5/7

Amir Lashgari
Amir Lashgari

H-Index: 5

All-PEGylated redox-active metal-free organic molecules in non-aqueous redox flow battery

Journal of Materials Chemistry A

2020/3/17

Amir Lashgari
Amir Lashgari

H-Index: 5

Xiao Wang
Xiao Wang

H-Index: 4

PEGylation-Enabled Extended Cyclability of a Non-Aqueous Redox Flow Battery

ACS Applied Materials & Interfaces

2020/3/9

Amir Lashgari
Amir Lashgari

H-Index: 5

Xiao Wang
Xiao Wang

H-Index: 4

See List of Professors in Amir Lashgari University(University of Cincinnati)

Co-Authors

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