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Year Number of Results
1832 1
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1847 3
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1882 1
1890 1
1898 1
1900 1
1919 1
1923 1
1925 1
1926 1
1928 1
1934 1
1939 1
1944 13
1945 183
1946 277
1947 404
1948 525
1949 458
1950 817
1951 1001
1952 1020
1953 977
1954 942
1955 955
1956 905
1957 984
1958 855
1959 392
1960 25
1961 25
1962 26
1963 591
1964 1113
1965 1074
1966 960
1967 1072
1968 1019
1969 1119
1970 1225
1971 1256
1972 1221
1973 940
1974 890
1975 963
1976 979
1977 942
1978 1072
1979 1035
1980 980
1981 990
1982 912
1983 952
1984 1023
1985 1028
1986 1061
1987 1106
1988 1146
1989 1222
1990 1118
1991 1106
1992 1119
1993 1147
1994 1193
1995 1204
1996 1718
1997 2367
1998 3303
1999 4351
2000 5453
2001 6174
2002 6857
2003 7600
2004 8792
2005 10192
2006 11366
2007 12487
2008 13484
2009 14190
2010 15756
2011 16904
2012 17295
2013 16916
2014 17510
2015 20674
2016 21419
2017 20083
2018 22052
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2022 23326
2023 21601
2024 22376
2025 2278

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414,123 results

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The following term was not found in PubMed: Cam-Duc
Page 1
Antimicrobial Gold Nanoclusters.
Zheng K, Setyawati MI, Leong DT, Xie J. Zheng K, et al. ACS Nano. 2017 Jul 25;11(7):6904-6910. doi: 10.1021/acsnano.7b02035. Epub 2017 Jun 13. ACS Nano. 2017. PMID: 28595000
Bulk gold (Au) is known to be chemically inactive. However, when the size of Au nanoparticles (Au NPs) decreases to close to 1 nm or sub-nanometer dimensions, these ultrasmall Au nanoclusters (Au NCs) begin to possess interesting physical and ch …
Bulk gold (Au) is known to be chemically inactive. However, when the size of Au nanoparticles (Au NPs) decreases to clo …
Plasmonic Au-Cu nanostructures: Synthesis and applications.
Mi X, Chen H, Li J, Qiao H. Mi X, et al. Front Chem. 2023 Mar 8;11:1153936. doi: 10.3389/fchem.2023.1153936. eCollection 2023. Front Chem. 2023. PMID: 36970414 Free PMC article. Review.
Plasmonic Au-Cu nanostructures composed of Au and Cu metals, have demonstrated advantages over their monolithic counterparts, which have recently attracted considerable attention. ...Herein, recent developments in Au-Cu nanostructures are summarized. The deve …
Plasmonic Au-Cu nanostructures composed of Au and Cu metals, have demonstrated advantages over their monolithic counterparts, …
Structural predictions of three medium-sized thiolate-protected gold nanoclusters Au(44)(SR)(30), Au(56)(SR)(32), and Au(60)(SR)(34).
Han W, Wang G, Liu P, Li W, Xu WW. Han W, et al. Nanoscale Adv. 2023 Jul 27;5(17):4464-4469. doi: 10.1039/d3na00372h. eCollection 2023 Aug 24. Nanoscale Adv. 2023. PMID: 37638170 Free PMC article.
In this paper, three new atomic structures of medium-sized thiolate-protected gold nanoclusters, i.e. Au(44)(SR)(30), Au(56)(SR)(32), and Au(60)(SR)(34), are predicted based on the grand unified model and ring model. Two structural evolution rules, i.e., A
In this paper, three new atomic structures of medium-sized thiolate-protected gold nanoclusters, i.e. Au(44)(SR)(30), Au(56)(S …
Synthetic Principles of Spiky Au Nanoparticles.
Zhang M, Hao M, Tang X, Fan Y, Xia H. Zhang M, et al. ACS Appl Mater Interfaces. 2023 Dec 27;15(51):59722-59730. doi: 10.1021/acsami.3c15615. Epub 2023 Dec 13. ACS Appl Mater Interfaces. 2023. PMID: 38091471
In this work, the synthetic principles of spiky Au nanoparticles (spiky Au NPs) with an average number of spikes of less than or equal to six and controlled core sizes by using Au nanorods as seeds (Au-NR seeds) are summarized on the basis of the resul …
In this work, the synthetic principles of spiky Au nanoparticles (spiky Au NPs) with an average number of spikes of less than …
Shape control of Au nanostructures using peptides for biotechnological applications.
Yoshida S, Tomizaki KY, Usui K. Yoshida S, et al. Chem Commun (Camb). 2023 Nov 7;59(89):13239-13244. doi: 10.1039/d3cc04331b. Chem Commun (Camb). 2023. PMID: 37855705 Review.
Peptides are promising compounds for controlling the shape of Au nanostructures by mineralization with several advantages for this purpose. In this highlight, we focus on the shapes with respect to the fabrication of Au nanostructures using biocompatible peptides. W …
Peptides are promising compounds for controlling the shape of Au nanostructures by mineralization with several advantages for this pu …
Cafe-au-lait Macules and Neurofibromatosis Type 1: A Review of the Literature.
Bernier A, Larbrisseau A, Perreault S. Bernier A, et al. Pediatr Neurol. 2016 Jul;60:24-29.e1. doi: 10.1016/j.pediatrneurol.2016.03.003. Epub 2016 Mar 19. Pediatr Neurol. 2016. PMID: 27212418 Review.
BACKGROUND: The first sign of neurofibromatosis type 1 (NF1) in a child is often the presence of multiple cafe-au-lait macules. Although previous studies reported that almost individuals with multiple cafe-au-lait macules will eventually develop NF1 based on clinica …
BACKGROUND: The first sign of neurofibromatosis type 1 (NF1) in a child is often the presence of multiple cafe-au-lait macules. Altho …
Diffusion-controlled bridging of the Au Island and Au core in Au@Rh(OH)(3) core-shell structure.
Zhang J, Ren Q, Wang Y, Xiao R, Chen H, Xu W, Feng Y. Zhang J, et al. Front Chem. 2023 Jan 25;11:1138932. doi: 10.3389/fchem.2023.1138932. eCollection 2023. Front Chem. 2023. PMID: 36762190 Free PMC article.
Consequently, two types of distinct structures, the Au island-on-[Au@Rh(OH)(3)] dimer and Au island-Au bridge-[Au@Rh(OH)(3)] dumbbell structures with thin necks were obtained. Further modulations of the growth kinetics led to the formation of …
Consequently, two types of distinct structures, the Au island-on-[Au@Rh(OH)(3)] dimer and Au island-Au bridge-[ …
Effects of Au(6) and Au(20) Adsorption Sites of Cyromazine-Au Complexes by Raman Spectroscopy and Density Functional Theory.
Guo C, Song C, Wang Q, Dou Y, Gao X, Chen A, Lin J. Guo C, et al. Langmuir. 2023 Oct 3;39(39):13968-13975. doi: 10.1021/acs.langmuir.3c01654. Epub 2023 Sep 21. Langmuir. 2023. PMID: 37734007
The study of the chemical enhancement mechanism of SERS of cyromazine at different adsorption sites of Au(6) or Au(20) confirms the existence of a charge transfer between cyclopromazine and Au(6) and Au(20), which can adsorb and form stable cyromazine- …
The study of the chemical enhancement mechanism of SERS of cyromazine at different adsorption sites of Au(6) or Au(20) confirm …
Plasmonic Hot-Electron-Painted Au@Pt Nanoparticles as Efficient Electrocatalysts for Detection of H(2)O(2).
Xia C, He W, Yang XF, Gao PF, Zhen SJ, Li YF, Huang CZ. Xia C, et al. Anal Chem. 2022 Oct 4;94(39):13440-13446. doi: 10.1021/acs.analchem.2c02434. Epub 2022 Sep 21. Anal Chem. 2022. PMID: 36130106
Au nanoparticles, including Au nanospheres (Au NSs), Au nanorods (Au NRs), and Au nanobipyramids (Au NBPs), generated hot electrons under localized surface plasmon resonance (LSPR) excitation, which made the platinum precursor redu
Au nanoparticles, including Au nanospheres (Au NSs), Au nanorods (Au NRs), and Au nanobipyramids (
Synthesis of Au(38)(SCH(2)CH(2)Ph)(24), Au(36)(SPh-tBu)(24), and Au(30)(S-tBu)(18) Nanomolecules from a Common Precursor Mixture.
Rambukwella M, Dass A. Rambukwella M, et al. Langmuir. 2017 Oct 17;33(41):10958-10964. doi: 10.1021/acs.langmuir.7b03080. Epub 2017 Oct 3. Langmuir. 2017. PMID: 28972376
Phenylethanethiol protected nanomolecules such as Au(25), Au(38), and Au(144) are widely studied by a broad range of scientists in the community, owing primarily to the availability of simple synthetic protocols. ...The central idea of simple synthetic method …
Phenylethanethiol protected nanomolecules such as Au(25), Au(38), and Au(144) are widely studied by a broad range of sc …
414,123 results
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