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Anvar A. Zakhidov
Researcher at University of Texas at Dallas
Publications - 431
Citations - 29853
Anvar A. Zakhidov is an academic researcher from University of Texas at Dallas. The author has contributed to research in topics: Perovskite (structure) & Carbon nanotube. The author has an hindex of 63, co-authored 417 publications receiving 27644 citations. Previous affiliations of Anvar A. Zakhidov include University of Texas System & Business International Corporation.
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Nanoimprinted P3HT/C60 solar cells optimized by oblique deposition of C60
TL;DR: In this article, a poly(3-hexylthiophene) (P3HT)-C60 organic photovoltaic devices with interpenetrating donor-acceptor interfaces were fabricated by oblique thermal deposition of C60 into the P3HT nanogratings.
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Flexible, ultralight, porous superconducting yarns containing shell-core magnesium diboride-carbon nanotube nanofibers.
Julia Bykova,Márcio D. Lima,Carter S. Haines,Derrick Tolly,M. B. Salamon,M. B. Salamon,Ray H. Baughman,Anvar A. Zakhidov +7 more
TL;DR: Flexible, light-weight yarns that have a superconducting transition around 37.8 K and critical current and critical field comparable with those of existing MgB2 wires, but have about 20 times lower density than bulk M gB2.
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Bright Single-Layer Perovskite Host–Ionic Guest Light-Emitting Electrochemical Cells
Aditya Mishra,Stephen DiLuzio,Masoud Alahbakhshi,Austen C. Adams,Melanie H. Bowler,Jiyoung Moon,Qing Gu,Anvar A. Zakhidov,Anvar A. Zakhidov,Stefan Bernhard,Jason D. Slinker +10 more
TL;DR: Perovskite light-emitting devices have drawn considerable attention for their favorable optoelectronic properties and high carrier mobilities make perovskites excellent candidates as host materials in...
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Enhanced terahertz emission from imprinted halide perovskite nanostructures
Viacheslav Korolev,Anatoly P. Pushkarev,Petr A. Obraztsov,Petr A. Obraztsov,A. N. Tsypkin,Anvar A. Zakhidov,Anvar A. Zakhidov,Sergey V. Makarov +7 more
TL;DR: In this paper, the perovskite nanostructures not only improve absorption of the incident laser pulses, but also lead to a non-symmetric near field distribution.
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Weak suppression of ferromagnetism in tetrakis(dimethylamino)ethylene-(C60)1-x(C70)x.
TL;DR: The ESR g values and linewidths of these complexes remarkably increase below the Curie temperature and the three-dimensional spin correlations between TDAE molecules both along the c axis and in the ab plane are important for this interesting magnetism.