Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Aleca M. Borsuk"'
Autor:
Mina Momayyezi, Aleca M. Borsuk, Craig R. Brodersen, Matthew E. Gilbert, Guillaume Théroux‐Rancourt, Daniel A. Kluepfel, Andrew J. McElrone
Publikováno v:
Plant, Cell & Environment. 45:1362-1381
Autor:
Martin Lopez-Garcia, William P. Wardley, Robert Fosbury, Alex Qiu, Andrew J. Parnell, Natalie Nicolas, Aleca M. Borsuk, Nicola J. Nadeau, Helen Clark, Mathias Kolle, Peter Vukusic, Amanda Holt, Sébastien R. Mouchet, Benjamin A. Palmer, Thomas G. Parton, Anthony D. McDougal, Gerd E. Schröder-Turk, Christian Kuttner, Ming Xiao, Maria Helena Godinho, Mike Hardy, Primož Pirih, Esteban Bermudez Ureña, Gea T. van de Kerkhof
Publikováno v:
Bermudez Ureña, E, Borsuk, A, Clark, H, Fosbury, R, Godinho, M H, Hardy, M, Holt, A, Kolle, M, Kuttner, C, Lopez-Garcia, M, McDougal, A, Mouchet, S R, Nadeau, N J, Nicolas, N, Palmer, B A, Parnell, A, Parton, T G, Pirih, P, Qiu, A, Schröder-Turk, G, Van De Kerkhof, G T, Vukusic, P, Wardley, W & Xiao, M 2020, ' The role of composition : Natural materials: Vs. synthetic composites: General discussion ', Faraday Discussions, vol. 223, pp. 295-306 . https://doi.org/10.1039/d0fd90017f
Autor:
Mina, Momayyezi, Aleca M, Borsuk, Craig R, Brodersen, Matthew E, Gilbert, Guillaume, Théroux-Rancourt, Daniel A, Kluepfel, Andrew J, McElrone
Publikováno v:
Plant, cellenvironment. 45(5)
Leaves balance CO
Autor:
Aleca M. Borsuk, Craig R. Brodersen
Publikováno v:
Plant Physiology. 180:1406-1417
Measuring and modeling the spatial distribution of chlorophyll within the leaf is critical for understanding the relationship between leaf structure and carbon assimilation, for defining the relative investments in leaf tissues from the perspective o
Autor:
Mathieu Ladouce, Peter Vukusic, Amanda Holt, Mike Hardy, Stephanie L. Burg, Christian Kuttner, Daniel Osorio, Yin Chang, Gea T. van de Kerkhof, Doekele G. Stavenga, Primož Pirih, Silvia Vignolini, Giselle Rosetta, Lukas Schertel, Aleca M. Borsuk, Adam J. Blake, Pascal Barla, Hans Arwin, Mathias Kolle, Amina Matt, Anupama Prakash, Ming Xiao, Melanie N. Brien, Andrew J. Parnell, Pascal Freyer, Diana Skigin, Sébastien R. Mouchet, Nicola J. Nadeau, Akhil Kallepalli
Publikováno v:
Arwin, H, Barla, P, Blake, A J, Borsuk, A, Brien, M, Burg, S, Chang, Y, Freyer, P, Hardy, M, Holt, A, Kallepalli, A, Van De Kerkhof, G T, Kolle, M, Kuttner, C, Ladouce, M, Matt, A, Mouchet, S R, Nadeau, N J, Osorio, D, Parnell, A, Pirih, P, Prakash, A, Rosetta, G, Schertel, L, Skigin, D, Stavenga, D, Vignolini, S, Vukusic, P & Xiao, M 2020, ' Optics and photonics in nature : General discussion ', Faraday Discussions, vol. 223, pp. 107-124 . https://doi.org/10.1039/d0fd90013c
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::04ccaef1350048c447775e9a0bbfc31e
https://pure.unamur.be/ws/files/53551024/Arwin_Faraday_Discussions_2020_optics_and_photonics_in_nature.pdf
https://pure.unamur.be/ws/files/53551024/Arwin_Faraday_Discussions_2020_optics_and_photonics_in_nature.pdf
Autor:
Aleca M. Borsuk, John V. Lloyd, Colton R. Bukowsky, Rebecca Saive, Hal S. Emmer, Harry A. Atwater, Sisir Yalamanchili
Effectively transparent front contacts for optoelectronic devices achieve a measured transparency of up to 99.9% and a measured sheet resistance of 4.8 Ω sq^(−1). The 3D microscale triangular cross-section grid fingers redirect incoming photons ef
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::b7504c76e9162be119ef78d483eb80c5
https://resolver.caltech.edu/CaltechAUTHORS:20160620-101424565
https://resolver.caltech.edu/CaltechAUTHORS:20160620-101424565
Autor:
Mathieu Boccard, Harry A. Atwater, Colton R. Bukowsky, Aleca M. Borsuk, Rebecca Saive, Theresa E. Saenz, Sisir Yalamanchili, Zachary C. Holman
Publikováno v:
2016 IEEE 43rd Photovoltaic Specialists Conference (PVSC).
We have developed effectively transparent contacts (ETCs) that allow for increased current in heterojunction solar cells. Micro-meter scaled triangular cross-section grid fingers with micro-meter scaled distance redirect light efficiently to the acti