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Quantum chemical investigation on the structure and first hyperpolarizability for N-substituted [n]cyclacene

机译:N-取代的[n]环并茂的结构和第一超极化性的量子化学研究

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Six N-substituted [n]cyclacene (n = 5, 6, 7,?,10) molecules were designed to study the relationship between the structure and first hyperpolarizability. Their static first hyperpolarizabilities (β _0) were obtained by MP2/6-31 + g(d) level. Two interesting relationships between the β _0 value and the structure have been found: (1) The β _0 value increases with the increase of the number n when n is odd: 3155 ([5]cyclacene) < 48,905 ([7]cyclacene) < < 393,444 ([9]cyclacene), and when n is even: 357,620 ([6]cyclacene) < 618,608 ([8]cyclacene) < 3,513,644 a.u. ([10]cyclacene). (2) The β _0 values (in the range of 357,620 ~ 3,513,644 a.u.) of the N-substituted [n]cyclacene (when n is odd) are much larger (in the range of 3155~393,444 a.u.) than that of the N-substituted [n]cyclacene (when n is even). Furthermore, their frequency-dependent β (-2ω ω, ω) and β (-ω ω, 0) (ω = 0.005, 0.01, and 0.0239 a.u.) were also estimated by M?ller-Plesset perturbation/6-31 + g(d) level. Among the frequency-dependent β (ω), [10]cyclacene has the largest β (-ω ω, 0) and β (-2ω ω, ω) to be 1.2 × 10 ~8 (ω = 0.01) and 2.9 × 10 ~7 a.u. (ω = 0.005 a.u.), which are much larger than the static β _0 = 3.5 × 10 ~6 a.u. by 34 and 8 times. Our present work may offer a new idea in the design of high-performance tubiform nonlinear optical materials.
机译:设计了六个N-取代的[n]并环(n = 5、6、7,?,10)分子,以研究结构与第一超极化性之间的关系。通过MP2 / 6-31 + g(d)水平获得它们的静态第一超极化率(β_0)。在β_0值和结构之间发现了两个有趣的关系:(1)当n为奇数时,β_0值随n的增加而增加:3155([5]并并苯)<48,905([7]并并苯) 393,444([9]并四苯),并且当n为偶数时:357,620([6]并四苯)<618,608([8]并四苯)<3,513,644 au ([10]并四苯)。 (2)当n为奇数时,N-取代的[n]环并茂的β_0值(在357,620〜3,513,644 au范围内)比N的β_0值大得多(在3155〜393,444 au范围内)。 -取代的[n]并并苯(当n为偶数时)。此外,它们的频率相关β(-2ωω,ω)和β(-ωω,0)(ω= 0.005、0.01和0.0239 au)也通过M?ller-Plesset摄动/ 6-31 + g来估计。 (d)等级。在与频率相关的β(ω)中,[10]并四环具有最大的β(-ωω,0)和β(-2ωω,ω),分别为1.2×10〜8(ω= 0.01)和2.9×10 〜7金(ω= 0.005 a.u.),远大于静态β_0 = 3.5×10〜6a.u。分别是34和8倍我们目前的工作可能会为高性能管状管状非线性光学材料的设计提供新思路。

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