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Quantum chemical studies on tuning the second-order nonlinear optical molecular switching of triarylborane derivatives

Quantum chemical studies on tuning the second-order nonlinear optical molecular switching of triarylborane derivatives
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摘要 In this work, density functional theory (DFT) combined with the finite field (FF) method has been adopted to analyze the second-order nonlinear optical (NLO) properties of the triarylborane (TAB) derivatives obtained by introducing different inductive electron groups into the phenylene ring of the TAB (RTAB, where R=2-C6H5-C2B10H10(1),R=F(2), R=Me(3),R=NO2(4),R=NH2(5)). The static first hyperpolarizabilities (βtot) of the RTAB molecules can be switched by binding one F- to the boron center (RTAB′) or one-electron reduction (RTAB"). The DFT-FF calculations show that the βtot values of 2′, 3′ and 5′ decrease while those of 1′ and 4′ increase compared with the values of their neutral molecules, which was attributed to the fact that the charge transfers of 2, 3 and 5 become smaller and those of 1 and 4 become larger by binding one F- ion to the boron center, according to time-domain DFT (TD-DFT) analysis. However, the incorporation of one electron enhances the second-order NLO properties of the RTAB molecules remarkably, especially for system 1. It is notable that the βtot value of reduced form 1″ is 508.69×10-30 esu, i.e. about 578 times larger than that of system 1. Frontier molecular orbital (FMO) and natural bond orbital (NBO) analyses suggest that the reversal of the charge distribution between the neutral molecules and their reduced forms leads to low HOMO-LUMO energy gaps (E0) and thus large βtot values for the reduced forms. In this work, density functional theory (DFT) combined with the finite field (FF) method has been adopted to analyze the second- order nonlinear optical (NLO) properties of the triarylborane (TAB) derivatives obtained by introducing different inductive elec- tron groups into the phenylene ring of the TAB (RTAB, where R=2-C6H5-C2B10H10(1), R=F(2), R=Me(3), R=NO2(4), R=NH2(5)). The static first hyperpolarizabilities (Rot) of the RTAB molecules can be switched by binding one F- to the boron center (RTAB') or one-electron reduction (RTAB”). The DFT-FF calculations show that the βtot values of 2', 3' and 5' decrease while those of 1' and 4' increase compared with the values of their neutral molecules, which was attributed to the fact that the charge transfers of 2, 3 and 5 become smaller and those of 1 and 4 become larger by binding one F^- ion to the boron center, according to time-domain DFT (TD-DFT) analysis. However, the incorporation of one electron enhances the second-order NLO properties of the RTAB molecules remarkably, especially for system 1. It is notable that the βtot value of reduced form 1” is 508.69×10 ^-30 esu, i.e. about 578 times larger than that of system 1. Frontier molecular orbital (FMO) and natural bond orbital (NBO) analyses suggest that the reversal of the charge distribution between the neutral molecules and their reduced forms leads to low HOMO-LUMO energy gaps (E0) and thus large βtot values for the reduced forms.
出处 《Chinese Science Bulletin》 SCIE CAS 2012年第15期1772-1780,共9页
基金 supported by the National Natural Science Foundation of China (20873017) the Natural Science Foundation of Jilin Province(20101154)
关键词 二阶非线性光学性质 分子开关 衍生物 三芳基 硼烷 化学研究 TD-DFT 单电子还原 triarylborane derivatives, second-order NLO property, NLO switching, DFT
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  • 1Whittall IR,Humphery MG,Samoc M,Luther-Davies B,Hockless DCR.Organometallic complexes for non-linear optics XII.Syntheses and second-order susceptibilities of(neomenthyldiphenylphosphine) gold?-arylacetylides:X-ray crystal structure of Au(C ≡CPh)(nmdpp) and Au((E)-4,4′-C ≡CC6H4CH=CHC6H4NO2)(nmdpp). Organic Geochemistry . 1997
  • 2Hurst SK,Cifuentes MP,McDonagh AM,Humphrey MG,Samoc M,Luther-Daries B,Asselberghs I,Persoons A.Organometicallic com- plexes for nonlinear opticals:Part 25.Quadratic and cubic hyperpo- larrizabilities of some dipolar and quadrupolar gold and ruthenium complexes. Journal of Organometallic Chemistry . 2002
  • 3Hurst SK,Lucas NT,Humphrey MG,Isoshima T,Wostyn K,Assel- berghs I,Clays K,Persoons A,Samoc M,Luther-Daries B.Or- ganometallic complexes for nonlinear optics.Part 29.Quadratic and cubic hyperpolarizabilities of stibenylethynyl-gold and–ruthenium complexes. Inorganica Chimica Acta . 2003
  • 4Sun SL,Qin CS,Qiu YQ,Yang GC,Su ZM.Theoretical investiga- tion of structures,electronic spectra and nonlinear optical properties of gold-pentacene(Au2C22H14)complexes. Journal of Organometallic Chemistry . 2009
  • 5Crespo O,Concepcion Gimeno M,Laguna A,Pena AM.Or- ganometallic gold derivatives with the[1-SitBuMe2-1,2-C2B1 0H1 0]- carboranyl ligand.Crystal structure of[1-{Au(PPh3)}-2-SitBuMe2-1,2-C2B10H10]. Polyhedron . 1998
  • 6Crespo O,Concepcion Gimeno M,Laguna A.Carboranyl C-- bonded and C-functionalized carboranes as ligands in gold and silver chemistry. Journal of Organometallic Chemistry . 2009
  • 7Crespo O,Concepcion Gimeno M,Laguna A,Ospino I,Aullon G,Oliva JM.Organometallic gold complexes of carborane.Theoretical comparative analysis of ortho,meta,and para derivatives and lumi- nescence studies. Dalton Transactions . 2009
  • 8Qiu YQ,Liu XD,Sun SL,Fan M,Su ZM,Wang RS.DFT study on second-order nonlinear optical properties of the derivatives of7-vertex cobalt–carborane metallocenyl. J Mol Struct:THEOCHEM . 2008
  • 9Karakas A,Elmali A,Unver H.Linear optical transmission meas- urements and computational study of linear polarizabilities,first hy- perpolarizabilities of a dinuclear iron(III)complex. Spectrochimica Acta . 2007
  • 10Kanis DR,Ratner MA,Marks TJ.Design and construction of molecular assemblies with large second-order optical nonlinearities Quantum chemical aspects. Chemical Reviews . 1994

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