# |
Année |
Titre |
Revue |
Lien éditeur / doi |
Notice HAL |
1 |
2019 |
A new method to analyze and understand molecular linear and nonlinear optical responses via field-induced functions: a straightforward alternative to sum-over-states (SOS) analysis |
Physical Chemistry Chemical Physics |
10.1039/C8CP07362G
|
hal-02094772
|
2 |
2019 |
Polyaromatic Systems Combining Increasing Optical Gaps and Amplified Nonlinear Optical Properties. A Comprehensive Theoretical Study on B 3 N 3 Doped Nanographenes |
Journal of Physical Chemistry C |
10.1021/acs.jpcc.9b05543
|
hal-02287378
|
3 |
2019 |
Ab-initio calculations of the IR spectra of dicyanodiacetylene (C6N2) beyond the harmonic approximation |
Chemical Physics Letters |
10.1016/j.cplett.2019.03.038
|
hal-02093880
|
4 |
2019 |
Degradation of polar and non-polar pharmaceutical pollutants in water by solar assisted photocatalysis using hydrothermal TiO2-SnS2 |
Chemical Engineering Journal |
10.1016/j.cej.2019.122826
|
hal-02389108
|
5 |
2018 |
A computational study of photonic materials based on Ni bis(dithiolene) fused with benzene, possessing gigantic second hyperpolarizabilities |
Journal of Materials Chemistry C |
10.1039/c7tc05047j
|
hal-01712793
|
6 |
2018 |
Ab initio calculation of nonlinear optical properties for chiral carbon nanotubes. Second harmonic generation and dc-Pockels effect |
Theoretical Chemistry Accounts: Theory, Computation, and Modeling |
10.1007/s00214-017-2187-7
|
hal-01689447
|
7 |
2018 |
Theoretical Investigation of the Infrared Spectrum of 5-Bromo-2,4-pentadiynenitrile from a CCSD(T)/B3LYP Anharmonic Potential |
ChemPhysChem |
10.1002/cphc.201701322
|
hal-01803795
|
8 |
2018 |
Hirshfeld-based atomic population analysis of the B, N doping effect in zigzag graphene nanoribbons: π electron density as requirement to follow the B, N doping guidelines |
Theoretical Chemistry Accounts: Theory, Computation, and Modeling |
10.1007/s00214-017-2189-5
|
hal-01689444
|
9 |
2017 |
Quadratic nonlinear optical (NLO) properties of borazino (B3N3)-doped nanographenes |
Journal of Materials Chemistry C |
10.1039/c7tc01963g
|
hal-01598669
|
10 |
2017 |
Exploring the Linear Optical Properties of Borazine (B3N3) Doped Graphenes. 0D Flakes vs 2D Sheets. |
Journal of Physical Chemistry C |
10.1021/acs.jpcc.6b10837
|
hal-01481308
|
11 |
2017 |
Prediction of biodegradability of aromatics in water using QSAR modeling |
Ecotoxicology and Environmental Safety |
10.1016/j.ecoenv.2017.01.031
|
hal-01535438
|
12 |
2016 |
Establishing the pivotal role of local aromaticity in the electronic properties of boron-nitride graphene lateral hybrids |
Physical Chemistry Chemical Physics |
10.1039/c6cp04502b
|
hal-01500049
|
13 |
2016 |
A Computational Study of the Interaction and Polarization Effects of Complexes Involving Molecular Graphene and C _\textrm60 or a Nucleobases |
Journal of Physical Chemistry A |
10.1021/acs.jpca.5b09813
|
hal-01494462
|
14 |
2016 |
A series of novel derivatives with giant second hyperpolarizabilities, based on radiaannulenes, tetrathiafulvalene, nickel dithiolene, and their lithiated analogues |
Journal of Physical Chemistry C |
10.1021/acs.jpcc.6b02131
|
hal-01498751
|
15 |
2015 |
Electric property variations in nanosized hexagonal boron nitride/graphene hybrids |
Journal of Physical Chemistry C |
10.1021/acs.jpcc.5b02793
|
hal-01598672
|
16 |
2015 |
Hirshfeld-based intrinsic polarizability density representations as a tool to analyze molecular polarizability |
Journal of Computational Chemistry |
10.1002/jcc.24003
|
hal-01598671
|
17 |
2014 |
Significant nonlinear-optical switching capacity in atomic clusters built from silicon and lithium: A combined ab initio and density functional study |
Journal of Computational Chemistry |
10.1002/jcc.23549
|
hal-01598674
|
18 |
2014 |
Unleashing the quadratic nonlinear optical responses of graphene by confining white-graphene (h -BN) sections in its framework |
Journal of the American Chemical Society |
10.1021/ja502631w
|
hal-01598675
|
19 |
2013 |
Erratum: Comment on:"Planar tetra-coordinate carbon resulting in enhanced third-order nonlinear optical response of metal-terminated graphene nanoribbons." (Journal of Materials Chemistry C (2013) 1 (3035-3040) DOI: 10.1039/C3TC00922J) |
Journal of Materials Chemistry C |
10.1039/c3tc90148c
|
hal-01598683
|
20 |
2013 |
Comment on "planar tetra-coordinate carbon resulting in enhanced third-order nonlinear optical response of metal-terminated graphene nanoribbons" by G.-L. Chai, C.-S. Lin and W.-D. Cheng, J. Mater. Chem., 2012, 22, 11303 |
Journal of Materials Chemistry C |
10.1039/c3tc00922j
|
hal-01598680
|
21 |
2013 |
Second-hyperpolarizability (γ) enhancement in metal-decorated zigzag graphene flakes and ribbons: The size effect |
Journal of Physical Chemistry C |
10.1021/jp3114682
|
hal-01598677
|
22 |
2013 |
Comment on "How the number and location of lithium atoms affect the first hyperpolarizability of graphene |
Journal of Physical Chemistry C |
10.1021/jp3057256
|
hal-01598679
|
23 |
2013 |
Electric response properties of neutral and charged Al13X (X=Li, Na, K) magic clusters. A comprehensive ab initio and density functional comparative study |
Computational and Theoretical Chemistry |
10.1016/j.comptc.2013.06.037
|
hal-01598682
|
24 |
2013 |
Ab initio periodic simulation of the spectroscopic and optical properties of novel porous graphene phases |
Journal of Physical Chemistry C |
10.1021/jp3103436
|
hal-01598678
|
25 |
2012 |
Structural and static electric response properties of highly symmetric lithiated silicon cages: Theoretical predictions |
Journal of Computational Chemistry |
10.1002/jcc.22938
|
hal-01598686
|
26 |
2012 |
Fullerene-C 60 in contact with alkali metal clusters: Prototype nano-objects of enhanced first hyperpolarizabilities |
Journal of Physical Chemistry C |
10.1021/jp3026573
|
hal-01598685
|
27 |
2011 |
Evolution of properties in prolate (GaAs) n clusters |
Journal of Physical Chemistry C |
10.1021/jp107720m
|
hal-01598695
|
28 |
2011 |
Doping-enhanced hyperpolarizabilities of silicon clusters: A global ab initio and density functional theory study of Si10 (Li, Na, K) n (n 1, 2) clusters |
Journal of Chemical Physics |
10.1063/1.3615499
|
hal-01598698
|
29 |
2011 |
On the shape dependence of cluster (hyper)polarizabilities. A combined ab initio and DFT study on large fullerene-like gallium arsenide semiconductor clusters |
International Journal of Quantum Chemistry |
10.1002/qua.22854
|
hal-01598693
|
30 |
2010 |
Doping effects on the electric response properties of silicon clusters: A global structure-property investigation of AlSin-1 clusters (n = 3-10) |
Chemical Physics Letters |
10.1016/j.cplett.2010.09.074
|
hal-01598703
|
31 |
2010 |
A critical analysis of the performance of new generation functionals on the calculation of the (hyper) polarizabilities of clusters of varying stoichiometry: Test case the SimGen (m + n = 7, n = 0-7) clusters |
Chemical Physics Letters |
10.1016/j.cplett.2010.08.050
|
hal-01598704
|
32 |
2009 |
How large are the microscopic electronic dipole (hyper)polarizabilities of CdnTen bare clusters compared to those of CdnSn and CdnSen? A systematic ab initio study |
Chemical Physics Letters |
10.1016/j.cplett.2009.04.047
|
hal-01598706
|
33 |
2009 |
Structures and composition-dependent polarizabilities of open- and closed-shell Gan Asm semiconductor clusters |
Physical Review A |
10.1103/PhysRevA.80.053201
|
hal-01598710
|
34 |
2008 |
Electric dipole (hyper)polarizabilities of selected X2Y 2 and X3Y3 (X = Al, Ga, In and Y = P, As): III-V semiconductor clusters. An ab initio comparative study |
Journal of Physical Chemistry A |
10.1021/jp8071603
|
hal-01598719
|
35 |
2008 |
Structure, stability, dipole polarizability and differential polarizability in small gallium arsenide clusters from all-electron ab initio and density-functional-theory calculations |
Physical Review A |
10.1103/PhysRevA.77.013201
|
hal-01598717
|
36 |
2007 |
A critical analysis of the performance of conventional ab initio and DFT methods in the computation of Si6 ground state |
Chemical Physics |
10.1016/j.chemphys.2006.11.013
|
hal-01598720
|
37 |
2007 |
Hyperpolarizability of GaAs dimer is not negative |
Journal of Chemical Physics |
10.1063/1.2723116
|
hal-01598725
|
38 |
2007 |
Ab initio finite field (hyper)polarizability computations on stoichiometric gallium arsenide clusters GanAsn (n=2-9) |
Journal of Chemical Physics |
10.1063/1.2768365
|
hal-01598723
|
39 |
2006 |
Basis set and electron correlation effects in all-electron ab initio calculations of the static dipole polarizability of small cadmium selenide clusters, (CdSe)n, n = 1,2,3,4 |
Chemical Physics |
10.1016/j.chemphys.2006.09.038
|
hal-01598734
|
40 |
2006 |
Molecular geometry and polarizability of small cadmium selenide clusters from all-electron ab initio and Density Functional Theory calculations |
Journal of Chemical Physics |
10.1063/1.2173236
|
hal-01598731
|