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Results by year

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

Year Number of Results
1865 1
1868 3
1870 1
1879 1
1881 1
1888 1
1894 1
1898 1
1902 1
1903 1
1904 1
1906 1
1913 2
1914 1
1919 2
1920 1
1922 3
1923 4
1924 3
1925 7
1926 5
1927 4
1928 2
1929 3
1930 3
1931 2
1939 3
1942 2
1945 32
1946 89
1947 127
1948 116
1949 127
1950 186
1951 173
1952 245
1953 269
1954 290
1955 236
1956 186
1957 185
1958 172
1959 186
1960 233
1961 244
1962 290
1963 714
1964 1287
1965 1175
1966 1339
1967 2010
1968 2875
1969 3212
1970 3130
1971 3100
1972 2938
1973 1554
1974 1510
1975 1448
1976 1273
1977 1313
1978 1304
1979 1179
1980 1298
1981 1183
1982 1158
1983 1158
1984 1275
1985 1373
1986 1392
1987 1288
1988 1300
1989 1684
1990 1719
1991 1886
1992 1924
1993 1891
1994 2004
1995 2225
1996 2298
1997 2409
1998 2742
1999 3138
2000 3883
2001 4201
2002 4651
2003 4964
2004 6467
2005 9399
2006 10181
2007 10379
2008 11281
2009 11930
2010 13138
2011 14712
2012 15205
2013 15527
2014 15939
2015 15812
2016 14748
2017 14767
2018 15550
2019 16616
2020 16625
2021 15899
2022 14643
2023 12800
2024 5458

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Search Results

333,278 results

Results by year

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Page 1
Demonstration of static electricity induced luminescence.
Kikunaga K, Terasaki N. Kikunaga K, et al. Sci Rep. 2022 Jun 2;12(1):8524. doi: 10.1038/s41598-022-12704-5. Sci Rep. 2022. PMID: 35654848 Free PMC article.
Can we visualise static electricity, which everyone in the world knows about? Since static electricity is generated by contact or peeling, it may be a source of malfunction of electronic components, whose importance is steadily increasing, and even cau …
Can we visualise static electricity, which everyone in the world knows about? Since static electricity is genera …
Reductionist Approach in Peptide-Based Nanotechnology.
Gazit E. Gazit E. Annu Rev Biochem. 2018 Jun 20;87:533-553. doi: 10.1146/annurev-biochem-062917-012541. Annu Rev Biochem. 2018. PMID: 29925257 Free PMC article. Review.
The formation of ordered nanostructures by molecular self-assembly of proteins and peptides represents one of the principal directions in nanotechnology. ...
The formation of ordered nanostructures by molecular self-assembly of proteins and peptides represents one of the principal direction …
Intrinsic Luminescence from Nonaromatic Biomolecules.
Wang Y, Zhao Z, Yuan WZ. Wang Y, et al. Chempluschem. 2020 May;85(5):1065-1080. doi: 10.1002/cplu.202000021. Chempluschem. 2020. PMID: 32459886 Review.
The clustering-triggered emission (CTE) mechanism has previously been proposed to rationalize the luminescence of unconventional chromophores. Moreover, great attention has been paid to the distinctive inherent luminescence from nonaromatic biomolecules such as cell …
The clustering-triggered emission (CTE) mechanism has previously been proposed to rationalize the luminescence of unconventional chro …
Studies of the Process of Amyloid Formation by Aβ Peptide.
Galzitskaya OV, Galushko EI, Selivanova OM. Galzitskaya OV, et al. Biochemistry (Mosc). 2018 Jan;83(Suppl 1):S62-S80. doi: 10.1134/S0006297918140079. Biochemistry (Mosc). 2018. PMID: 29544432 Free article. Review.
Nanostructured luminescently labeled nucleic acids.
Kricka LJ, Fortina P, Park JY. Kricka LJ, et al. Luminescence. 2017 Mar;32(2):132-141. doi: 10.1002/bio.3170. Epub 2016 Jul 15. Luminescence. 2017. PMID: 27417153 Review.
Important and emerging trends at the interface of luminescence, nucleic acids and nanotechnology are: (i) the conventional luminescence labeling of nucleic acid nanostructures (e.g. DNA tetrahedron); (ii) the labeling of bulk nucleic acids (e.g. single-strand …
Important and emerging trends at the interface of luminescence, nucleic acids and nanotechnology are: (i) the conventional lumines
Nanometrological porphyrins.
Safar GA, Idemori YM, CarvalhoDa-Silva D, Rebouças JS, Mazzoni MS, Righi A. Safar GA, et al. Nanotechnology. 2012 Jul 11;23(27):275504. doi: 10.1088/0957-4484/23/27/275504. Epub 2012 Jun 19. Nanotechnology. 2012. PMID: 22710428
A new cationic silver N-alkylpyridylporphyrin complex is able to 'sense' nanometric conductive particles with a diameter below 10 nm. The luminescence of the molecule changes its maximum from red to blue when it embraces a conductive (metallic or semiconducting) nanopartic …
A new cationic silver N-alkylpyridylporphyrin complex is able to 'sense' nanometric conductive particles with a diameter below 10 nm. The …
333,278 results
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