TY - JOUR
T1 - Interpreting the behavior of the NICSzz by resolving in orbitals, sign, and positions
AU - Acke, Guillaume
AU - Van Damme, Sofie
AU - Havenith, Remco W. A.
AU - Bultinck, Patrick
PY - 2018/4/5
Y1 - 2018/4/5
N2 - The zz component of the nucleus independent chemical shift or the NICSzz is commonly used as a quantifier of the (anti)aromatic character of a (sub)system. One of the underlying assumptions is that a position can be found where the aromatic ring currents are adequately reflected in the corresponding NICSzz value. However, as the NICSzz is the result of an integration over the entire space, it no longer explicitly contains the information needed to quantify the separate contributions arising from underlying current density patterns. In this study, we will show that these contributions can be revealed by resolving the NICSzz into orbitals, sign, and positions. Our analysis of benzene in terms of these resolutions shows that the same underlying current density can lead to highly complex shielding patterns that vary greatly depending on the position of the NICSzz-probe. As such, our results indicate that any analysis solely based on NICSzz-values can lead to results that are difficult to interpret, even if the system under study is considered to be well-known. (c) 2017 Wiley Periodicals, Inc.
AB - The zz component of the nucleus independent chemical shift or the NICSzz is commonly used as a quantifier of the (anti)aromatic character of a (sub)system. One of the underlying assumptions is that a position can be found where the aromatic ring currents are adequately reflected in the corresponding NICSzz value. However, as the NICSzz is the result of an integration over the entire space, it no longer explicitly contains the information needed to quantify the separate contributions arising from underlying current density patterns. In this study, we will show that these contributions can be revealed by resolving the NICSzz into orbitals, sign, and positions. Our analysis of benzene in terms of these resolutions shows that the same underlying current density can lead to highly complex shielding patterns that vary greatly depending on the position of the NICSzz-probe. As such, our results indicate that any analysis solely based on NICSzz-values can lead to results that are difficult to interpret, even if the system under study is considered to be well-known. (c) 2017 Wiley Periodicals, Inc.
KW - NICSzz
KW - NICSDzz
KW - shielding density field
KW - POLYCYCLIC AROMATIC-HYDROCARBONS
KW - INDEPENDENT CHEMICAL-SHIFTS
KW - MAGNETIC SHIELDING DENSITY
KW - RING CURRENTS
KW - ELECTRON DELOCALIZATION
KW - LOCAL AROMATICITY
KW - 6-MEMBERED HETEROCYCLES
KW - QUANTITATIVE CONCEPT
KW - RESPONSE PROPERTIES
KW - BENZENE MOLECULE
U2 - 10.1002/jcc.25095
DO - 10.1002/jcc.25095
M3 - Article
SN - 0192-8651
VL - 39
SP - 511
EP - 519
JO - Journal of Computational Chemistry
JF - Journal of Computational Chemistry
IS - 9
ER -