Zobrazeno 1 - 10
of 16
pro vyhledávání: '"Kyle R. Lennon"'
Publikováno v:
Data-Centric Engineering, Vol 4 (2023)
The superposition of data sets with internal parametric self-similarity is a longstanding and widespread technique for the analysis of many types of experimental data across the physical sciences. Typically, this superposition is performed manually,
Externí odkaz:
https://doaj.org/article/d6c14fb609044866a24089a864a232d4
Autor:
Tory A. Welsch, Hanz Y. Ramírez, D. Bruce Chase, Eric Y. Chen, Matthew F. Doty, Joshua M. O. Zide, Jill M. Cleveland, Kyle R. Lennon, Christopher C. Milleville
Publikováno v:
The Journal of Physical Chemistry C. 125:17183-17193
Autor:
Madhu V. Majji, Bertrand J. Neyhouse, Nicholas J. Matteucci, Kyle R. Lennon, Christopher T. Mallia, Alexis M. Fenton Jr., James W. Swan, Fikile R. Brushett
Publikováno v:
Journal of The Electrochemical Society. 170:050532
Flowable suspension-based electrodes (FSEs) have gained attention in recent years, as the integration of solid materials into electrochemical flow cells can offer improved performance and flexible operation. However, under conditions that engender fa
Publikováno v:
arXiv
A new mathematical representation for nonlinear viscoelasticity is presented based on application of the Volterra series expansion to the general nonlinear relationship between shear stress and shear strain history. This theoretical and experimental
Autor:
Bertrand J. Neyhouse, Madhu V. Majji, Nicholas J. Matteucci, Kyle R. Lennon, James W. Swan, Fikile R. Brushett
Publikováno v:
ECS Meeting Abstracts. :2022-2022
Electrochemical energy storage technologies are poised to play a key role in enabling society-wide decarbonization by facilitating the deployment of variable electricity generators and enhancing existing grid infrastructure. Redox flow batteries (RFB
A general framework for Maxwell-Oldroyd type differential constitutive models is examined, in which an unspecified nonlinear function of the stress and rate-of-deformation tensors is incorporated into the well-known corotational version of the Jeffre
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ed1fb7ff79b4fd2c4bcddcf439b2c616
http://arxiv.org/abs/2103.02560
http://arxiv.org/abs/2103.02560
Autor:
Satish Kumar Gupta, Kyle R. Lennon, Mary A. Joens, Hari Bandi, Martijn Van Galen, YuLong Han, Wenhui Tang, Yiwei Li, Steven Charles Wasserman, James W. Swan, Ming Guo
Publikováno v:
Physical Review E 104 (2021) 6
Physical Review E, 104(6)
Physical Review E, 104(6)
This article presents micro-medium-amplitude oscillatory shear (μMAOS), a method to measure the frequency-dependent micromechanical properties of soft materials in the asymptotically nonlinear regime using optical tweezers. We have developed a theor
An experimental protocol is developed to directly measure the new material functions revealed by medium amplitude parallel superposition (MAPS) rheology. This experimental protocol measures the medium amplitude response of a material to a simple shea
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::78da7c3a8b38cfa44345f42aee60778e
http://arxiv.org/abs/2006.09465
http://arxiv.org/abs/2006.09465
Autor:
Jing Zhang, James Bork, Christopher C. Milleville, Jill M. Cleveland, Kyle R. Lennon, Matthew F. Doty, Abinash Kumar, Ansel Tessier, James M. LeBeau, Joshua M. O. Zide, Eric Y. Chen, D. Bruce Chase
Publikováno v:
ACS nano. 13(1)
Photon upconversion is a photophysical process in which two low-energy photons are converted into one high-energy photon. Photon upconversion has broad appeal for a range of applications from biomedical imaging and targeted drug release to solar ener
Enhanced Upconversion Performance in Alloyed CdSe(Te)/CdS1–xSex/CdSe Core/Rod/Emitter Nanostructures
Autor:
Jill M. Cleveland, Christopher C. Milleville, Matthew F. Doty, Eric Y. Chen, Kyle R. Lennon, M O Zide Joshua
Publikováno v:
2018 IEEE 7th World Conference on Photovoltaic Energy Conversion (WCPEC) (A Joint Conference of 45th IEEE PVSC, 28th PVSEC & 34th EU PVSEC).
Colloidal quantum dot (QD) nanostructures have been shown to convert multiple low-energy photons into a single, high-energy photon through a process called photon upconversion. QD nanostructures could replace conventional upconverter materials in sol