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The Journal of Physical Chemistry. A
|
October 16, 2014
Collision-induced dissociation of monolayer protected clusters Au144 and Au130 in an electrospray time-of-flight mass spectrometer
David M Black, Nabraj Bhattarai, Robert L Whetten, et al.
Nanomaterials (Basel, Switzerland)
|
September 14, 2019
New Evidence of the Bidentate Binding Mode in 3-MBA Protected Gold Clusters: Analysis of Aqueous 13-18 kDa Gold-Thiolate Clusters by HPLC-ESI-MS Reveals Special Compositions Au<sub>n</sub>(3-MBA)<sub>p</sub>, (<i>n</i> = 48-67, <i>p</i> = 26-30)
David M Black, M Mozammel Hoque, Germán Placencia-Villa, et al.
The Journal of Physical Chemistry Letters
|
May 9, 2019
Base Side of Noble Metal Clusters: Efficient Route to Captamino-Gold, Au <sub>n</sub>(-S(CH<sub>2</sub>)<sub>2</sub>N(CH<sub>3</sub>)<sub>2</sub>) <sub>p</sub>, n = 25-144
M Mozammel Hoque, David M Black, Kathryn M Mayer, et al.
Physical Chemistry Chemical Physics : PCCP
|
October 10, 2013
Structure & bonding of the gold-subhalide cluster I-Au144Cl60[z]
Alfredo Tlahuice-Flores, David M Black, Stephan B H Bach, et al.
Analytical Chemistry
|
December 21, 2017
Liquid Chromatography Separation and Mass Spectrometry Detection of Silver-Lipoate Ag<sub>29</sub>(LA)<sub>12</sub> Nanoclusters: Evidence of Isomerism in the Solution Phase
David M Black, Geronimo Robles, Priscilla Lopez, et al.
Nanoscale
|
September 9, 2021
Isolation of the Au<sub>145</sub>(SR)<sub>60</sub>X compound (R = <i>n</i>-butyl, <i>n</i>-pentyl; X = Br, Cl): novel gold nanoclusters that exhibit properties subtly distinct from the ubiquitous icosahedral Au<sub>144</sub>(SR)<sub>60</sub> compound
Tiziano Dainese, Sabrina Antonello, Sara Bonacchi, et al.
ACS Omega
|
January 1, 2020
Activating a Silver Lipoate Nanocluster with a Penicillin Backbone Induces a Synergistic Effect against <i>S. aureus</i> Biofilm
Humberto H Lara, David M Black, Christine Moon, et al.
The Journal of Physical Chemistry. B
|
June 9, 2016
Hidden Components in Aqueous "Gold-144" Fractionated by PAGE: High-Resolution Orbitrap ESI-MS Identifies the Gold-102 and Higher All-Aromatic Au-pMBA Cluster Compounds
Marcos M Alvarez, Jenny Chen, Germán Plascencia-Villa, et al.
Chemical Science
|
January 17, 2019
Atomically precise Au<sub>144</sub>(SR)<sub>60</sub> nanoclusters (R = Et, Pr) are capped by 12 distinct ligand types of 5-fold equivalence and display gigantic diastereotopic effects
Tiziano Dainese, Mikhail Agrachev, Sabrina Antonello, et al.
ACS Applied Nano Materials
|
October 1, 2020
Tetrahedral (<i>T</i>) Closed-Shell Cluster of 29 Silver Atoms & 12 Lipoate Ligands, [Ag<sub>29</sub>(R-α-LA)<sub>12</sub>]<sup>(3-)</sup>: Antibacterial and Antifungal Activity
Priscilla Lopez, Humberto H Lara, Sean M Mullins, et al.
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Search research articles
Search
Showing results (11-20 of 21) with videos related to
Sort By:
Page
of 3
The Journal of Physical Chemistry. A
|
October 16, 2014
Collision-induced dissociation of monolayer protected clusters Au144 and Au130 in an electrospray time-of-flight mass spectrometer
David M Black, Nabraj Bhattarai, Robert L Whetten, et al.
Nanomaterials (Basel, Switzerland)
|
September 14, 2019
New Evidence of the Bidentate Binding Mode in 3-MBA Protected Gold Clusters: Analysis of Aqueous 13-18 kDa Gold-Thiolate Clusters by HPLC-ESI-MS Reveals Special Compositions Au<sub>n</sub>(3-MBA)<sub>p</sub>, (<i>n</i> = 48-67, <i>p</i> = 26-30)
David M Black, M Mozammel Hoque, Germán Placencia-Villa, et al.
The Journal of Physical Chemistry Letters
|
May 9, 2019
Base Side of Noble Metal Clusters: Efficient Route to Captamino-Gold, Au <sub>n</sub>(-S(CH<sub>2</sub>)<sub>2</sub>N(CH<sub>3</sub>)<sub>2</sub>) <sub>p</sub>, n = 25-144
M Mozammel Hoque, David M Black, Kathryn M Mayer, et al.
Physical Chemistry Chemical Physics : PCCP
|
October 10, 2013
Structure & bonding of the gold-subhalide cluster I-Au144Cl60[z]
Alfredo Tlahuice-Flores, David M Black, Stephan B H Bach, et al.
Analytical Chemistry
|
December 21, 2017
Liquid Chromatography Separation and Mass Spectrometry Detection of Silver-Lipoate Ag<sub>29</sub>(LA)<sub>12</sub> Nanoclusters: Evidence of Isomerism in the Solution Phase
David M Black, Geronimo Robles, Priscilla Lopez, et al.
Nanoscale
|
September 9, 2021
Isolation of the Au<sub>145</sub>(SR)<sub>60</sub>X compound (R = <i>n</i>-butyl, <i>n</i>-pentyl; X = Br, Cl): novel gold nanoclusters that exhibit properties subtly distinct from the ubiquitous icosahedral Au<sub>144</sub>(SR)<sub>60</sub> compound
Tiziano Dainese, Sabrina Antonello, Sara Bonacchi, et al.
ACS Omega
|
January 1, 2020
Activating a Silver Lipoate Nanocluster with a Penicillin Backbone Induces a Synergistic Effect against <i>S. aureus</i> Biofilm
Humberto H Lara, David M Black, Christine Moon, et al.
The Journal of Physical Chemistry. B
|
June 9, 2016
Hidden Components in Aqueous "Gold-144" Fractionated by PAGE: High-Resolution Orbitrap ESI-MS Identifies the Gold-102 and Higher All-Aromatic Au-pMBA Cluster Compounds
Marcos M Alvarez, Jenny Chen, Germán Plascencia-Villa, et al.
Chemical Science
|
January 17, 2019
Atomically precise Au<sub>144</sub>(SR)<sub>60</sub> nanoclusters (R = Et, Pr) are capped by 12 distinct ligand types of 5-fold equivalence and display gigantic diastereotopic effects
Tiziano Dainese, Mikhail Agrachev, Sabrina Antonello, et al.
ACS Applied Nano Materials
|
October 1, 2020
Tetrahedral (<i>T</i>) Closed-Shell Cluster of 29 Silver Atoms & 12 Lipoate Ligands, [Ag<sub>29</sub>(R-α-LA)<sub>12</sub>]<sup>(3-)</sup>: Antibacterial and Antifungal Activity
Priscilla Lopez, Humberto H Lara, Sean M Mullins, et al.
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