Showing results (91-100 of 119) with videos related to
Sort By:
Pageof 12
Nanotechnology|October 25, 2012
Current path in light emitting diodes based on nanowire ensemblesF Limbach, C Hauswald, J Lähnemann, et al.Annals of Internal Medicine|December 8, 2010
The immune reconstitution inflammatory syndrome in whipple disease: a cohort studyGerhard E Feurle, Verena Moos, Katina Schinnerling, et al.Physical Review Letters|February 21, 2015
Evolution of polytypism in GaAs nanowires during growth revealed by time-resolved in situ x-ray diffractionPhilipp Schroth, Martin Köhl, Jean-Wolfgang Hornung, et al.Nano Letters|January 30, 2015
Correlation of electrical and structural properties of single as-grown GaAs nanowires on Si (111) substratesGenziana Bussone, Heiko Schäfer-Eberwein, Emmanouil Dimakis, et al.Nano Letters|January 12, 2017
Polarity-Induced Selective Area Epitaxy of GaN NanowiresZiani de Souza Schiaber, Gabriele Calabrese, Xiang Kong, et al.Infection and Immunity|November 12, 2014
Role of dendritic cells in the pathogenesis of Whipple's diseaseKatina Schinnerling, Anika Geelhaar-Karsch, Kristina Allers, et al.Nano Letters|December 14, 2006
Silicon-nanowire transistors with intruded nickel-silicide contactsWalter M Weber, Lutz Geelhaar, Andrew P Graham, et al.Nanoscale|January 11, 2023
Exploiting flux shadowing for strain and bending engineering in core-shell nanowiresMahmoud Al Humaidi, Julian Jakob, Ali Al Hassan, et al.Nanoscale Research Letters|May 16, 2012
Polarized recombination of acoustically transported carriers in GaAs nanowiresMichael Möller, Alberto Hernández-Mínguez, Steffen Breuer, et al.Infection and Immunity|June 1, 2017
Peripheral T-Cell Reactivity to Heat Shock Protein 70 and Its Cofactor GrpE from Tropheryma whipplei Is Reduced in Patients with Classical Whipple's DiseaseLucia Trotta, Kathleen Weigt, Katina Schinnerling, et al.Pageof 12