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jiqiang木蟲 (正式寫手)
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[求助]
求幫解答一個(gè)審稿人的問題,用gaussian 09結(jié)構(gòu)優(yōu)化,計(jì)算理論值的基本參數(shù)設(shè)置問題
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最近投了一個(gè)垃圾文章,之前被拒7次后這次意外讓大修,里面有一個(gè)計(jì)算的問題對(duì)本人來(lái)說(shuō)非常棘手,本人對(duì)計(jì)算確實(shí)不太懂,而且計(jì)算這塊原來(lái)是師兄算的,現(xiàn)在師兄畢業(yè),我對(duì)這問題更無(wú)解了,審稿人評(píng)論和問題簡(jiǎn)介如下: This manuscript reports on the synthesis and characterization using usual spectroscopic techniques of two novel cationic cyclopentadienyl-iron-arene complexes containing triphenyl butene substituent as well as their nucleophilic hydroxyl organic precursors. In addition, the optical properties of the mixed sandwich compounds were studied both experimentally and theoretically (DFT/B3LYP and TD-DFT) methods). 問題:7) the authors should be aware that the dipole moment of an ion is not invariant with respect to a change of the origin. Have they tried to calculate the hyperpolarizabilities with different choices of origin? 下面是部分計(jì)算源程序內(nèi)容: 里面一種物質(zhì)的Z構(gòu)型的部分內(nèi)容: %nosave %chk=D:\calculation(Junru Han)\2.chk %mem=1GB # opt freq=savenormalmodes b3pw91/lanl2dz guess=(mix,local,save) pop=npa geom=connectivity scfcon=8 Title Card Required 1 1 C -0.29761905 0.00000000 0.00000000 C -1.00186977 -0.10291912 1.19379033 C -0.36969614 0.18339069 2.40414775 C 0.95935295 0.57603500 2.41930512 C 1.67668178 0.68083245 1.22976466 C 1.04456758 0.39048709 0.01315648 …… 另一個(gè)E型部分內(nèi)容: %nosave %chk=D:\try2\mo\1.chk # rb3lyp/genecp pop=full Title Card Required 1 1 C -0.50477747 0.14851485 -0.01321806 C -1.87921347 0.43661585 0.14665494 C -2.27681547 1.37158985 1.13107394 C -1.30983147 2.02649885 1.92557894 C 0.07722353 1.81381085 1.69965394 …… C Cl O H 0 6-31g** **** Fe 0 lanl2dz **** Fe 0 lanl2dz 兩個(gè)文件計(jì)算要求差別大,這個(gè)我也不知道師兄當(dāng)時(shí)怎么弄的,不過大致的參數(shù)可以看出了。結(jié)構(gòu)優(yōu)化是用的學(xué)校云計(jì)算平臺(tái)算的,再用實(shí)驗(yàn)室電腦做的單點(diǎn)能計(jì)算~~好像是這樣~~ 下面是文章的部分內(nèi)容,希望對(duì)應(yīng)助有幫助~~ The positive solvatochromism of the UV-Vis absorption of TPE-Fcs upon the increase in solvent polarity was found from the experiment. Quantum chemical calculations of the orbital energy, geometrical structure, absorption spectra, and first hyperpolarizability (β) values of the TPE-Fcs were carried out using density functional (DFT/B3LYP and TD-DFT) methods. The experimental results showed that the observed spectra were in good agreement with the calculated values. The calculated HOMO and LUMO energies showed that the compounds exhibit charge transfer that mediated by the metal center. …… In the present work, we have used density functional theory (DFT) at the Becke 3-Lee-Yang-Parr (B3LYP)/Genecp (Fe with Lanl2dz basis set and C, H, N, and O with 6-31G** basic set) basis set level for the computation of molecular structure and energies of the optimized structures in the ground state. The entire calculations were performed by using Gaussian09 program package. The absorption spectra of TPE-Fcs were calculated using the time-dependent density functional theory (TD-DFT) method from the gas phase optimized geometries. …… The enhancement of charge separation is known to favor large NLO responses. The electrostatic first hyperpolarizability (β) was calculated using the Gaussian 09 package. Based on the calculated electronic properties and geometries, the electrostatic first hyperpolarizability βμ were calculated using the DFT/B3LYP method. The βμ of the title compounds are shown in Table 4. The second-order optical susceptibility of the target compounds followed the order: βμ (TPE) < βμ (TPE-Fc) and βμ (Z) < βμ (E). This trend is attributed to the intermolecular charge-transfer of the TPE-Fc compounds. In the presence of the electron-rich diphenyl ether and diphenyl sulfide moiety as a strong donor-group and the cationic cyclopentadienyliron fragment as a strong acceptor-group led to a larger value of βμ (TPE-Fcs) than our previous study. This switching of electron delocalization directly affected the NLO coefficient, which could generate push–pull systems. Such systems favor the generation of large NLO responses. Sample Text |
木蟲 (正式寫手)
木蟲 (正式寫手)
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The dipole moment (μ), mean polarizability (α), and total first static hyperpolarizability (β) of TPE-Fcs were calculated in terms of x, y, z components, which are given by the following equations: μ=(μx2+μy2+μz2)1/2 (1) α=(αxx+αyy+αzz)/3 (2) β=(βx2+βy2+βz2)1/2 (3) βj=βjjj+∑(βjii+2βijj)/3 (i≠j; i, j=x, y, z) The β components of Gaussian output are reported on atomic units and therefore the calculated β components have been converted into electrostatic units βtot(esu) (1 a.u.=8.6393×10-33esu)[31]. 上次忘記給出這些內(nèi)容了,問題應(yīng)該是來(lái)自這兒的。。 |
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