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Results by year

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

Year Number of Results
1867 1
1886 1
1895 1
1905 1
1910 6
1911 6
1912 5
1913 3
1914 4
1915 5
1916 3
1917 1
1918 4
1919 8
1920 7
1921 7
1922 5
1923 5
1925 3
1926 1
1931 1
1933 1
1934 2
1940 1
1941 3
1944 1
1949 1
1950 3
1952 11
1953 9
1954 7
1955 4
1956 3
1957 3
1958 15
1959 7
1960 18
1961 19
1962 32
1963 49
1964 97
1965 97
1966 106
1967 296
1968 178
1969 267
1970 286
1971 350
1972 422
1973 439
1974 560
1975 1427
1976 1515
1977 1487
1978 1592
1979 1822
1980 1992
1981 2197
1982 2435
1983 2985
1984 3516
1985 3855
1986 3967
1987 4481
1988 4838
1989 5552
1990 5877
1991 6144
1992 6551
1993 6538
1994 6787
1995 6950
1996 7272
1997 7211
1998 7390
1999 7089
2000 7596
2001 7902
2002 8040
2003 8932
2004 10284
2005 11966
2006 12825
2007 13064
2008 14453
2009 15113
2010 16748
2011 18402
2012 19572
2013 20697
2014 21967
2015 23206
2016 22222
2017 22281
2018 27151
2019 29290
2020 32413
2021 33273
2022 34081
2023 33258
2024 12668

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544,810 results

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The following term was not found in PubMed: 016670
Page 1
Ca@Cu-CD nanoprobe for dual detection of glycine and ex vivo glycine imaging.
Behera L, Mishra L, Mishra M, Mohapatra S. Behera L, et al. J Mater Chem B. 2024 Apr 30. doi: 10.1039/d4tb00060a. Online ahead of print. J Mater Chem B. 2024. PMID: 38687579
The limit of detection for this nonenzymatic fluorescence and electrochemical sensing are 17.2 and 4.1 nM, respectively. Furthermore, an extensive evaluation of the toxicity and bioimaging properties in fruit fly Drosophila melanogaster shows that the Ca@Cu-CD probe is not …
The limit of detection for this nonenzymatic fluorescence and electrochemical sensing are 17.2 and 4.1 nM, respectively. Furthermore, …
Circular Differential Photocurrent Mapping of Hot Electron Response from Individual Plasmonic Nanohelicoids.
Wang L, Zheng J, Wang K, Khan M, Hu N, Li H, Li L, Wang J, Ni W. Wang L, et al. ACS Appl Mater Interfaces. 2024 Apr 30. doi: 10.1021/acsami.4c03457. Online ahead of print. ACS Appl Mater Interfaces. 2024. PMID: 38687553
While CDHE response was found inactive at a dipolar resonance of 750 nm, helicity-convoluted sites of HE generation were identified on the AuNH at a specific higher-order mode of 550 nm, resulting in a significant response of CDHE in association with the handedness …
While CDHE response was found inactive at a dipolar resonance of 750 nm, helicity-convoluted sites of HE generation were identified o …
Green synthesis of chitosan-encapsulated CuO nanocomposites for efficient degradation of cephalosporin antibiotics in contaminated water.
Bhatia N, Kumari A, Singh RR, Kumar G, Kandwal A, Sharma R. Bhatia N, et al. Environ Sci Pollut Res Int. 2024 Apr 30. doi: 10.1007/s11356-024-33476-7. Online ahead of print. Environ Sci Pollut Res Int. 2024. PMID: 38687453
The study revealed that the presence of diverse chemical components in the plant extract significantly influenced the size of the CuNPs, with transmission electron microscopy (TEM) showing spherical shapes and sizes ranging from 11-35 nm. The encapsulation process was conf …
The study revealed that the presence of diverse chemical components in the plant extract significantly influenced the size of the CuNPs, wit …
A dual emitting CsPbBr3/Eu-BDC composite as a ratiometric photoluminescent turn-on probe for aliphatic amine sensing.
Ahmed S, Dolui SK. Ahmed S, et al. Dalton Trans. 2024 Apr 30. doi: 10.1039/d4dt00222a. Online ahead of print. Dalton Trans. 2024. PMID: 38687325
In the presence of amines, the designed CsPbBr(3)/Eu-BDC sensor exhibits an enhancement of the PL signal of CsPbBr(3) at 518 nm and the Eu-BDC signal at 615 nm served as a standard for constructing the ratiometric sensing system. ...
In the presence of amines, the designed CsPbBr(3)/Eu-BDC sensor exhibits an enhancement of the PL signal of CsPbBr(3) at 518 nm and t …
Development of clobetasol-loaded biodegradable nanoparticles as an endodontic intracanal medicament.
Elmsmari F, González Sánchez JA, Delgado LM, Espina M, Duran-Sindreu F, García ML, Sánchez-López E. Elmsmari F, et al. Int Endod J. 2024 Apr 30. doi: 10.1111/iej.14072. Online ahead of print. Int Endod J. 2024. PMID: 38687284
RESULTS: Optimized CP-NPs displayed an average size below 200 nm and a monomodal population. Additionally, spherical morphology and non-aggregation of CP-NPs were confirmed by transmission electron microscopy. ...
RESULTS: Optimized CP-NPs displayed an average size below 200 nm and a monomodal population. Additionally, spherical morphology and n …
Detecting labile heme and ferroptosis through 'turn-on' fluorescence and lipid droplet localization post Fe2+ sensing.
Dubey Y, Mansuri S, Kanvah S. Dubey Y, et al. J Mater Chem B. 2024 Apr 30. doi: 10.1039/d4tb00353e. Online ahead of print. J Mater Chem B. 2024. PMID: 38687117
In this study, we have developed two simple "turn-on" fluorescent probes, NOPy and NOCN, for the quick and selective detection of Fe(2+) at nanomolar levels (LOD of 35 nM), accompanied by significant absorption and emission shifts, along with colorimetric demarcation. ...
In this study, we have developed two simple "turn-on" fluorescent probes, NOPy and NOCN, for the quick and selective detection of Fe(2+) at …
Rapid and selective RRS determination of ferrocyanide with a nanogold surface molecularly imprinted polymethacrylic acid probe.
Li Y, Liu Y, Liang A, Jiang Z. Li Y, et al. Analyst. 2024 Apr 30. doi: 10.1039/d4an00305e. Online ahead of print. Analyst. 2024. PMID: 38687011
AuNP@MIP was found to produce a resonance Rayleigh scattering (RRS) peak at 370 nm. When potassium ferrocyanide (K(4)Fe(CN)(6)) was present, a AuNP@MIP-Fe(CN)(6) complex was formed, producing RRS-energy transfer (RRS-ET). With an increase in ferrocyanide concentration with …
AuNP@MIP was found to produce a resonance Rayleigh scattering (RRS) peak at 370 nm. When potassium ferrocyanide (K(4)Fe(CN)(6)) was p …
Three-phase equilibria of hydrates from computer simulation. III. Effect of dispersive interactions in the methane and carbon dioxide hydrates.
Algaba J, Blazquez S, Míguez JM, Conde MM, Blas FJ. Algaba J, et al. J Chem Phys. 2024 Apr 28;160(16):164723. doi: 10.1063/5.0201309. J Chem Phys. 2024. PMID: 38686999
In particular, the temperature (T3) at which solid hydrate, water, and liquid CO2/gas CH4 coexist has been determined through molecular dynamics simulations using different cutoff values (from 0.9 to 1.6 nm) for dispersive interactions. The T3 of both hydrates has been det …
In particular, the temperature (T3) at which solid hydrate, water, and liquid CO2/gas CH4 coexist has been determined through molecular dyna …
Fluorescence-Encoded Time-Domain Coherent Raman Spectroscopy in the Visible Range.
Tamura T, McCann PC, Nishiyama R, Hiramatsu K, Goda K. Tamura T, et al. J Phys Chem Lett. 2024 Apr 30:4940-4947. doi: 10.1021/acs.jpclett.4c00817. Online ahead of print. J Phys Chem Lett. 2024. PMID: 38686981
We recently demonstrated fluorescence-encoded time-domain coherent Raman spectroscopy (FLETCHERS), which enables low-frequency vibrational spectroscopy of low-concentration fluorophores using near-infrared (800-900 nm) light excitation. However, the feasibility of this stu …
We recently demonstrated fluorescence-encoded time-domain coherent Raman spectroscopy (FLETCHERS), which enables low-frequency vibrational s …
544,810 results
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