Zobrazeno 1 - 10
of 13
pro vyhledávání: '"David J. Garfield"'
Autor:
Jill Engel-Cox, Jordan Cox, David J. Garfield, Richard Boardman, Thomas J. Tarka, Peter Balash, Shannon Bragg-Sitton, David Miller, Douglas J. Arent, Mark Ruth
Publikováno v:
Joule. 5:47-58
Summary Jurisdictions and industries are setting ambitious goals to decarbonize energy systems. Low-cost wind, solar, and natural gas and the resultant dynamic electric grid require energy technologies to adapt in order to meet key attributes for mod
Autor:
Emory M. Chan, Bining Tian, David J. Garfield, P. James Schuck, Adam C. Gotlin, Bruce E. Cohen, Ayelet Teitelboim, Angel Fernandez-Bravo
Publikováno v:
The Journal of Physical Chemistry C. 123:2678-2689
Applications of photon upconverting nanoparticles (UCNPs) in biological imaging and solar energy conversion demand that their anti-Stokes luminescence be both tunable and efficient. Rational design of more efficient UCNPs requires an understanding of
Autor:
Thomas S. Bischof, Angel Fernandez-Bravo, Jillian Iafrati, P. James Schuck, Maysamreza Chamanzar, Bruce E. Cohen, Cheryl A. Tajon, Elizabeth S. Levy, Emory M. Chan, David J. Garfield, Michel M. Maharbiz, Vikaas S. Sohal
Publikováno v:
ACS Nano. 10:8423-8433
Near infrared (NIR) microscopy enables noninvasive imaging in tissue, particularly in the NIR-II spectral range (1000-1400 nm) where attenuation due to tissue scattering and absorption is minimized. Lanthanide-doped upconverting nanocrystals are prom
Autor:
Emory M. Chan, David J. Garfield, Jillian Iafrati, P. James Schuck, Vikaas S. Sohal, Bruce E. Cohen, Maysamreza Chamanzar, Michel M. Maharbiz
Publikováno v:
Biomedical optics express, vol 9, iss 9
Chamanzar, M; Garfield, DJ; Iafrati, J; Chan, EM; Sohal, V; Cohen, BE; et al.(2018). Upconverting nanoparticle micro-lightbulbs designed for deep tissue optical stimulation and imaging. Biomedical Optics Express, 9(9), 4359-4371. doi: 10.1364/BOE.9.004359. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/3994m9km
Chamanzar, M; Garfield, DJ; Iafrati, J; Chan, EM; Sohal, V; Cohen, BE; et al.(2018). Upconverting nanoparticle micro-lightbulbs designed for deep tissue optical stimulation and imaging. Biomedical Optics Express, 9(9), 4359-4371. doi: 10.1364/BOE.9.004359. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/3994m9km
© 2018 Optical Society of America. Optical methods for imaging and stimulation of biological events based on the use of visible light are limited to the superficial layers of tissue due to the significant absorption and scattering of light. Here, we
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::40efd3af91cc2b0f31873fcf08bf7c7c
https://escholarship.org/uc/item/3994m9km
https://escholarship.org/uc/item/3994m9km
Autor:
Noah Kittner, Isa L. Ferrall, Daniel M. Kammen, David J. Garfield, Jessie Knapstein, Deborah A. Sunter
Publikováno v:
2018 IEEE 7th World Conference on Photovoltaic Energy Conversion (WCPEC) (A Joint Conference of 45th IEEE PVSC, 28th PVSEC & 34th EU PVSEC).
There have been numerous emerging next generation solar cell technologies with the potential to disrupt the solar industry. Perovskites in particular have taken the spotlight recently with unprecedented efficiency improvements. To quantify the rate o
Autor:
Bruce E. Cohen, Jillian Iafrati, P. James Schuck, Maysamreza Chamanzar, Vikaas S. Sohal, David J. Garfield, Michel M. Maharbiz, Emory M. Chan
Publikováno v:
EMBC
We demonstrate for the first time, the possibility of targeted optogenetic stimulation of neurons deep into brain tissue (>2 mm) in a minimally-invasive way by sending near-infrared light through tissue to excite passive lanthanide-doped blue-emittin
Autor:
Bruce E. Cohen, P. James Schuck, David J. Garfield, Vikaas S. Sohal, Michel M. Maharbiz, Maysamreza Chamanzar, Jillian Iafrati
Publikováno v:
CLEO: 2015.
We demonstrate the design and fabrication of implantable micro-scale light “bulbs” comprising of parylene-encapsulated upconverting lanthanide-doped nanocrystals (absorbing near-infrared and emitting blue light) for non-invasive targeted optogene