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Table representation of search results timeline featuring number of search results per year.

Year Number of Results
1963 1
1965 3
1975 1
1977 1
1978 1
1979 2
1980 3
1981 1
1982 1
1983 1
1986 3
1987 14
1988 13
1989 7
1990 3
1991 4
1992 1
1993 1
1994 1
1995 1
1996 2
1997 1
1999 5
2000 3
2001 4
2002 4
2003 4
2004 4
2005 6
2006 6
2007 5
2008 6
2009 9
2010 19
2011 13
2012 16
2013 13
2014 23
2015 27
2016 33
2017 61
2018 106
2019 109
2020 109
2021 116
2022 119
2023 131
2024 56

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982 results

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Page 1
Self-assembly of nanocrystal checkerboard patterns via non-specific interactions.
Wang Y, Zhou Y, Yang Q, Basak R, Xie Y, Le D, Fuqua AD, Shipley W, Yam Z, Frano A, Arya G, Tao AR. Wang Y, et al. Nat Commun. 2024 May 9;15(1):3913. doi: 10.1038/s41467-024-47572-2. Nat Commun. 2024. PMID: 38724558 Free PMC article.
Here we show the assembly of checkerboard lattices from colloidal nanocrystals that harness the effects of multiple, coupled physical forces at disparate length scales (interfacial, interparticle, and intermolecular) and that do not rely on chemical binding. ...
Here we show the assembly of checkerboard lattices from colloidal nanocrystals that harness the effects of multiple, coupled physical
Flow interactions lead to self-organized flight formations disrupted by self-amplifying waves.
Newbolt JW, Lewis N, Bleu M, Wu J, Mavroyiakoumou C, Ramananarivo S, Ristroph L. Newbolt JW, et al. Nat Commun. 2024 Apr 24;15(1):3462. doi: 10.1038/s41467-024-47525-9. Nat Commun. 2024. PMID: 38658577 Free PMC article.
Applying this framework to fish schools and bird flocks must account for visco-inertial flows as mediators of the physical interactions. Motivated by linear flight formations, here we show that pairwise flow interactions tend to promote crystalline or lattice-like arrangem …
Applying this framework to fish schools and bird flocks must account for visco-inertial flows as mediators of the physical interactio …
Understanding asymmetric switching times in accumulation mode organic electrochemical transistors.
Guo J, Chen SE, Giridharagopal R, Bischak CG, Onorato JW, Yan K, Shen Z, Li CZ, Luscombe CK, Ginger DS. Guo J, et al. Nat Mater. 2024 May;23(5):656-663. doi: 10.1038/s41563-024-01875-3. Epub 2024 Apr 17. Nat Mater. 2024. PMID: 38632374
We attribute the faster turn-off to a combination of engineering as well as physical and chemical factors including channel geometry, differences in doping and dedoping kinetics and the phenomena of carrier-density-dependent mobility. ...
We attribute the faster turn-off to a combination of engineering as well as physical and chemical factors including channel geometry, …
982 results