M. Scott Shell

M. Scott Shell

University of California, Santa Barbara

H-index: 36

North America-United States

About M. Scott Shell

M. Scott Shell, With an exceptional h-index of 36 and a recent h-index of 27 (since 2020), a distinguished researcher at University of California, Santa Barbara, specializes in the field of molecular simulation, multiscale modeling, thermodynamics, statistical mechanics.

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

Nanoscale water–polymer interactions tune macroscopic diffusivity of water in aqueous poly (ethylene oxide) solutions

Modeling of lubricant additives using a molecularly-informed field theory

Predicting Surfactant Phase Behavior from Molecularly Informed Field Theories

Control over Conformational Landscapes of Polypeptoids by Monomer Sequence Patterning

Bridging the Gap in Cryopreservation Mechanism: Unraveling the Interplay between Structure, Dynamics, and Thermodynamics in Cryoprotectant Aqueous Solutions

Inverse design of pore wall chemistry and topology through active learning of surface group interactions

Surveying the energy landscape of coarse-grained mappings

Computation of Overhauser Dynamic Nuclear Polarization processes reveals fundamental correlation between water dynamics, structure, and solvent restructuring entropy

M. Scott Shell Information

University

Position

Professor of Chemical Engineering

Citations(all)

6255

Citations(since 2020)

2645

Cited By

4566

hIndex(all)

36

hIndex(since 2020)

27

i10Index(all)

72

i10Index(since 2020)

53

Email

University Profile Page

University of California, Santa Barbara

Google Scholar

View Google Scholar Profile

M. Scott Shell Skills & Research Interests

molecular simulation

multiscale modeling

thermodynamics

statistical mechanics

Top articles of M. Scott Shell

Title

Journal

Author(s)

Publication Date

Nanoscale water–polymer interactions tune macroscopic diffusivity of water in aqueous poly (ethylene oxide) solutions

Chemical Science

Joshua D Moon

Thomas R Webber

Dennis Robinson Brown

Peter M Richardson

Thomas M Casey

...

2024

Modeling of lubricant additives using a molecularly-informed field theory

Bulletin of the American Physical Society

Charles Li

Michael Shell

Glenn Fredrickson

2024/3/8

Predicting Surfactant Phase Behavior from Molecularly Informed Field Theories

Bulletin of the American Physical Society

David Zhao

Steven Arturo

M Scott Shell

Glenn Fredrickson

2024/3/6

Control over Conformational Landscapes of Polypeptoids by Monomer Sequence Patterning

Macromolecules

Audra J DeStefano

Shawn D Mengel

Morgan W Bates

Sally Jiao

M Scott Shell

...

2024/2/18

Bridging the Gap in Cryopreservation Mechanism: Unraveling the Interplay between Structure, Dynamics, and Thermodynamics in Cryoprotectant Aqueous Solutions

The Journal of Physical Chemistry B

Debasish Das Mahanta

Dennis Robinson Brown

Thomas Webber

Simone Pezzotti

Gerhard Schwaab

...

2024/4/7

Inverse design of pore wall chemistry and topology through active learning of surface group interactions

The Journal of Chemical Physics

Sally Jiao

M Scott Shell

2024/3/28

Surveying the energy landscape of coarse-grained mappings

The Journal of Chemical Physics

Katherine M Kidder

M Scott Shell

WG Noid

2024/2/7

Computation of Overhauser Dynamic Nuclear Polarization processes reveals fundamental correlation between water dynamics, structure, and solvent restructuring entropy

Physical Chemistry Chemical Physics

Dennis Charles Robinson Brown

Thomas Reed Webber

Thomas M Casey

John Mark Franck

M Scott Shell

...

2024

Crystallization-Induced Flower-like Superstructures via Peptoid Helix Assembly

ACS Macro Letters

Kai-Chieh Yang

Daniela M Rivera Mirabal

Ronnie V Garcia

Niko W Vlahakis

Phong H Nguyen

...

2024/3/26

Predicting surfactant phase behavior with a molecularly informed field theory

Journal of Colloid and Interface Science

Kevin Shen

My Nguyen

Nicholas Sherck

Brian Yoo

Stephan Köhler

...

2023/5/15

Molecularly informed field theoretic models of surfactant formulations

APS March Meeting Abstracts

My Nguyen

Kevin Shen

Nicholas Sherck

Stephan Koehler

Rohini Gupta

...

2023

A colloidal model for equilibrium assembly and liquid-liquid phase separation of reflectin protein

APS March Meeting Abstracts

Tse-Chiang Huang

Robert Levenson

Youli Li

Phillip Kohl

Daniel Morse

...

2023

Relationships between Molecular Structural Order Parameters and Equilibrium Water Dynamics in Aqueous Mixtures

The Journal of Physical Chemistry B

Dennis Charles Robinson Brown

Thomas R Webber

Sally Jiao

Daniela M Rivera Mirabal

Songi Han

...

2023/5/12

Molecularly informed field theory for estimating critical micelle concentrations of intrinsically disordered protein surfactants

The Journal of Chemical Physics

My VT Nguyen

Kate Dolph

Kris T Delaney

Kevin Shen

Nicholas Sherck

...

2023/12/28

Phosphates form spectroscopically dark state assemblies in common aqueous solutions

Proceedings of the National Academy of Sciences

Joshua S Straub

Mesopotamia S Nowotarski

Jiaqi Lu

Tanvi Sheth

Sally Jiao

...

2023/1/3

Efficient calculation of χ parameters for polymer interactions from simulation

APS March Meeting Abstracts

Kevin Shen

Glenn Fredrickson

M Scott Shell

My Nguyen

Charles Li

...

2023

Relationships between Water’s Structure and Solute Affinity at Polypeptoid Brush Surfaces

Langmuir

Sally Jiao

Dennis C Robinson Brown

M Scott Shell

2023/12/20

Multiscale modeling of viscosity index improver (VII) polymers

APS March Meeting Abstracts

Charles Li

M Scott Shell

Glenn Fredrickson

Kris Delaney

2023

Tau P301L mutation promotes core 4R tauopathy fibril fold through near-surface water structuring and conformational rearrangement

bioRxiv

Michael Vigers

Samuel Lobo

Saeed Najafi

Austin Dubose

Karen Tsay

...

2023

Mapping the configurational landscape and aggregation phase behavior of the tau protein fragment PHF6

Proceedings of the National Academy of Sciences

Evan Pretti

M Scott Shell

2023/11/28

See List of Professors in M. Scott Shell University(University of California, Santa Barbara)