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1.
J Chem Phys ; 152(18): 184102, 2020 May 14.
Article in English | MEDLINE | ID: mdl-32414274

ABSTRACT

Specialized computational chemistry packages have permanently reshaped the landscape of chemical and materials science by providing tools to support and guide experimental efforts and for the prediction of atomistic and electronic properties. In this regard, electronic structure packages have played a special role by using first-principle-driven methodologies to model complex chemical and materials processes. Over the past few decades, the rapid development of computing technologies and the tremendous increase in computational power have offered a unique chance to study complex transformations using sophisticated and predictive many-body techniques that describe correlated behavior of electrons in molecular and condensed phase systems at different levels of theory. In enabling these simulations, novel parallel algorithms have been able to take advantage of computational resources to address the polynomial scaling of electronic structure methods. In this paper, we briefly review the NWChem computational chemistry suite, including its history, design principles, parallel tools, current capabilities, outreach, and outlook.

2.
Nanoscale ; 8(17): 9167-77, 2016 Apr 28.
Article in English | MEDLINE | ID: mdl-27074372

ABSTRACT

The ultra-high vacuum (UHV) room temperature adsorption of benzotriazole (BTAH), a well-known corrosion inhibitor for copper, has been investigated on the pristine Au(111) surface using a combination of surface sensitive techniques. The dimensionality of the molecule is reduced from the 3D crystal structure to a 2-dimensional surface confinement, which induces the formation of hydrogen bonded 1-dimensional molecular chains consisting of alternating pro-S and pro-R enantiomers mainly. The 0-dimensional system is characteristic of gas-phase BTAH, which undergoes a tautomeric equilibrium, with consequences for the resulting adsorbed species. The balance between hydrogen bonding, inter-chain van der Waals interactions and surface-molecule interactions, and the correlation with the dimensionality of the system, are discussed in light of the experimental results and a computational description of the observed features.

3.
Chem Commun (Camb) ; 47(37): 10365-7, 2011 Oct 07.
Article in English | MEDLINE | ID: mdl-21845278

ABSTRACT

STM imaging following the adsorption of (S)-lysine on Au{111} leads to the observation of Au nanofingers whose growth directions correlate with the unit cell vectors of ordered 2-D phases of lysine. The likely mechanism of surface restructuring is discussed.


Subject(s)
Gold/chemistry , Lysine/chemistry , Nanostructures/chemistry , Adsorption , Microscopy, Scanning Tunneling , Quantum Theory
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