Goodling, Amy E., Nagelberg, Sara, Kolle, Mathias, and Zarzar, Lauren D. Tunable and Responsive Structural Color from Polymeric Microstructured Surfaces Enabled by Interference of Totally Internally Reflected Light. Retrieved from https://par.nsf.gov/biblio/10159472. ACS Materials Letters . Web. doi:10.1021/acsmaterialslett.0c00143.
Goodling, Amy E., Nagelberg, Sara, Kolle, Mathias, & Zarzar, Lauren D. Tunable and Responsive Structural Color from Polymeric Microstructured Surfaces Enabled by Interference of Totally Internally Reflected Light. ACS Materials Letters, (). Retrieved from https://par.nsf.gov/biblio/10159472. https://doi.org/10.1021/acsmaterialslett.0c00143
Goodling, Amy E., Nagelberg, Sara, Kolle, Mathias, and Zarzar, Lauren D.
"Tunable and Responsive Structural Color from Polymeric Microstructured Surfaces Enabled by Interference of Totally Internally Reflected Light". ACS Materials Letters (). Country unknown/Code not available. https://doi.org/10.1021/acsmaterialslett.0c00143.https://par.nsf.gov/biblio/10159472.
@article{osti_10159472,
place = {Country unknown/Code not available},
title = {Tunable and Responsive Structural Color from Polymeric Microstructured Surfaces Enabled by Interference of Totally Internally Reflected Light},
url = {https://par.nsf.gov/biblio/10159472},
DOI = {10.1021/acsmaterialslett.0c00143},
abstractNote = {},
journal = {ACS Materials Letters},
author = {Goodling, Amy E. and Nagelberg, Sara and Kolle, Mathias and Zarzar, Lauren D.},
}
Warning: Leaving National Science Foundation Website
You are now leaving the National Science Foundation website to go to a non-government website.
Website:
NSF takes no responsibility for and exercises no control over the views expressed or the accuracy of
the information contained on this site. Also be aware that NSF's privacy policy does not apply to this site.