Katharine Greco

About Katharine Greco

Katharine Greco, With an exceptional h-index of 9 and a recent h-index of 7 (since 2020), a distinguished researcher at Massachusetts Institute of Technology, specializes in the field of chemical engineering, redox flow batteries.

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

Quantifying Concentration Distributions in Redox Flow Batteries with Neutron Radiography

A comparative study of compressive effects on the morphology and performance of carbon paper and cloth electrodes in redox flow batteries

Neutron Radiography As a Powerful Method to Visualize Reactive Flows in Redox Flow Batteries

Combining electrochemical and imaging analyses to understand the effect of electrode microstructure and electrolyte properties on redox flow batteries

Methods—A Potential–Dependent Thiele Modulus to Quantify the Effectiveness of Porous Electrocatalysts

Limited accessibility to surface area generated by thermal pretreatment of electrodes reduces its impact on redox flow battery performance

A potential–dependent Thiele modulus to quantify the effectiveness of porous electrocatalysts

Comparison of separators vs membranes in nonaqueous redox flow battery electrolytes containing small molecule active materials

Katharine Greco Information

University

Position

___

Citations(all)

373

Citations(since 2020)

358

Cited By

109

hIndex(all)

9

hIndex(since 2020)

7

i10Index(all)

9

i10Index(since 2020)

7

Email

University Profile Page

Google Scholar

Katharine Greco Skills & Research Interests

chemical engineering

redox flow batteries

Top articles of Katharine Greco

Quantifying Concentration Distributions in Redox Flow Batteries with Neutron Radiography

2023/8/25

A comparative study of compressive effects on the morphology and performance of carbon paper and cloth electrodes in redox flow batteries

Energy Technology

2022/8

Neutron Radiography As a Powerful Method to Visualize Reactive Flows in Redox Flow Batteries

Electrochemical Society Meeting Abstracts 241

2022/7/7

Katharine Greco
Katharine Greco

H-Index: 4

Antoni Forner-Cuenca
Antoni Forner-Cuenca

H-Index: 13

Combining electrochemical and imaging analyses to understand the effect of electrode microstructure and electrolyte properties on redox flow batteries

Applied Energy

2022/1/15

Methods—A Potential–Dependent Thiele Modulus to Quantify the Effectiveness of Porous Electrocatalysts

Journal of The Electrochemical Society

2021/10/29

Limited accessibility to surface area generated by thermal pretreatment of electrodes reduces its impact on redox flow battery performance

ACS Applied Energy Materials

2021/11/17

A potential–dependent Thiele modulus to quantify the effectiveness of porous electrocatalysts

2021/10/25

Comparison of separators vs membranes in nonaqueous redox flow battery electrolytes containing small molecule active materials

ACS Applied Energy Materials

2021/5/24

On the Impact of Electrode Properties and Their Design for Redox Flow Battery Performance

2021

Small-Scale, Low-Cost Flow Cell Platform for Rapid Characterization of Redox Flow Battery Materials

Electrochemical Society Meeting Abstracts prime2020

2020/11/23

Katharine Greco
Katharine Greco

H-Index: 4

Accessible Surface Area in Porous Carbon Electrodes and Its Impact on Redox Flow Battery Performance

Electrochemical Society Meeting Abstracts prime2020

2020/11/23

Katharine Greco
Katharine Greco

H-Index: 4

Combining Electrochemical, Fluid Dynamic, and Imaging Analyses to Understand the Effect of Electrode Microstructure and Electrolyte on Redox Flow Batteries

Electrochemical Society Meeting Abstracts prime2020

2020/11/23

Ultrathin conformal oCVD PEDOT coatings on carbon electrodes enable improved performance of redox flow batteries

Advanced Materials Interfaces

2020/10

See List of Professors in Katharine Greco University(Massachusetts Institute of Technology)