Data for Chain and Structural Dynamics in Melts of Sphere-Forming Diblock Copolymers

Loading...
Thumbnail Image
Statistics
View Statistics

Collection period

2021-08
2022-03

Date completed

2022-08-31

Date updated

Time period coverage

Geographic coverage

Source information

Journal Title

Journal ISSN

Volume Title

Title

Data for Chain and Structural Dynamics in Melts of Sphere-Forming Diblock Copolymers

Published Date

2024-07-22

Author Contact

Dorfman, Kevin D
dorfman@umn.edu

Type

Dataset
Simulation Data
Programming Software Code

Abstract

Processed simulation data appearing in the related manuscript

Description

These files consist of data for chain and structural dynamics of diblock copolymer micelles obtained from molecular dynamics simulations. These simulations consists of 64 beads of which 8 beads are of one type and 56 of another type. The timestep used for the simulation is 0.005 in natural simulation units. Each configuration is sampled after 1000 timesteps.

Referenced by

Chawla, A., Bates, F. S., Dorfman, K. D., & Morse, D. C. (2024). Chain and Structural Dynamics in Melts of Sphere-Forming Diblock Copolymers. Macromolecules. https://doi.org/10.1021/acs.macromol.4c01167

Related to

Replaces

item.page.isreplacedby

Publisher

Funding information

NSF DMR-2011401

item.page.sponsorshipfunderid

item.page.sponsorshipfundingagency

item.page.sponsorshipgrant

Previously Published Citation

Other identifiers

Suggested citation

Chawla, Anshul; Bates, Frank S; Dorfman, Kevin D; Morse, David C. (2024). Data for Chain and Structural Dynamics in Melts of Sphere-Forming Diblock Copolymers. Retrieved from the Data Repository for the University of Minnesota (DRUM), https://doi.org/10.13020/wfmq-5t90.

Content distributed via the University Digital Conservancy may be subject to additional license and use restrictions applied by the depositor. By using these files, users agree to the Terms of Use. Materials in the UDC may contain content that is disturbing and/or harmful. For more information, please see our statement on harmful content in digital repositories.