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首页> 外文期刊>Crystals >Synthesis, Crystal Structures, and DFT Calculations of Three New Cyano(phenylsulfonyl)indoles and a Key Synthetic Precursor Compound
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Synthesis, Crystal Structures, and DFT Calculations of Three New Cyano(phenylsulfonyl)indoles and a Key Synthetic Precursor Compound

机译:三种新型氰基(苯基磺酰基)吲哚和一种关键的合成前体化合物的合成,晶体结构和DFT计算

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摘要

Three cyano-1-(phenylsulfonyl)indole derivatives, 3-cyano-1-(phenylsulfonyl)indole, (I), 2-cyano-1-(phenylsulfonyl)indole, (II), and 2,3-dicyano-1-(phenylsulfonyl)indole, (III), and a key synthetic precursor 1-(phenylsulfonyl)-1-(1,1-dimethylethyl)indole-3-carboxamide, (IV), have been synthesized and their structures determined by single crystal X-ray crystallography. (I), C15H10N2O2S, is orthorhombic with space group P 212121 and cell constants: a = 4.9459(3) Å, b = 10.5401(7) Å, c = 25.0813(14) Å, V = 1307.50(14) Å3 and Z = 4. (II), C15H10N2O2S, is monoclinic with space group C 2/c and cell constants: a = 18.062(2) Å, b = 11.293(2) Å, c = 15.922(3) Å, α = 90°, β = 124.49(2)°, γ = 90°, V = 2676.7 Å3 and Z = 8. (III), C16H9N3O2S, is triclinic with space group P-1 and cell constants: a = 8.1986(8) Å, b = 9.6381(11) Å, c = 9.8113(5) Å, α = 95.053(6)°, β = 101.441(6)°, γ = 108.071(9)°, V = 713.02(11) Å3 and Z = 2. (IV), C19H20N2O3S, is orthorhombic with space group P ccn and cell constants: a = 13.7605(8) Å, b = 27.3177(14) Å, c = 9.7584(6) Å, α = 90°, β = 90°, γ =90°, V = 3668.2(4) Å3 and Z = 8. All four compounds have the same indole nitrogen phenylsulfonyl substituent and (I), (II), and (III) are nitrile derivatives. (IV) is a tert-butylamide. In the crystals, the dihedral angle between the mean planes of the indole and phenylsulfonyl groups are 85.4(2)° (I), 87.2(7)° (II), 75.1(7)° (III), and 88.6(2)° (IV), respectively. Additionally, DFT geometry-optimized molecular orbital calculations were performed and frontier molecular orbitals of each compound are displayed. Correlation between the calculated molecular orbital energies (eV) for the surfaces of the frontier molecular orbitals to the electronic excitation transitions from the absorption spectra of each compound has been proposed.
机译:三种氰基-1-(苯磺酰基)吲哚衍生物,3-氰基-1-(苯磺酰基)吲哚,(I),2-氰基-1-(苯磺酰基)吲哚,(II)和2,3-二氰基-1-合成了(苯磺酰基)吲哚(III)和关键合成前体1-(苯磺酰基)-1-(1,1-二甲基乙基)吲哚-3-羧酰胺(IV),并通过单晶X确定了它们的结构射线晶体学。 (I),C 15 H 10 N 2 O 2 S是正交的,空间群为P 2 < sub> 1 2 1 2 1 和单元格常数:a = 4.9459(3)Å,b = 10.5401(7)Å,c = 25.0813(14 )Å,V = 1307.50(14)Å 3 且Z = 4(II),C 15 H 10 N 2 O 2 S是具有空间组C 2 / c和单元常数的单斜晶系:a = 18.062(2)Å,b = 11.293(2)Å,c = 15.922(3) Å,α= 90°,β= 124.49(2)°,γ= 90°,V = 2676.7Å 3 和Z =8。(III),C 16 H 9 N 3 O 2 S,是三边形的,具有空间群P-1和单元常数:a = 8.1986(8)Å,b = 9.6381(11)Å,c = 9.8113(5)Å,α= 95.053(6)°,β= 101.441(6)°,γ= 108.071(9)°,V = 713.02(11)Å 3 且Z =2。(IV),C 19 H 20 N 2 O 3 S是正交的,具有空间群P ccn和单元常数:a = 13.7605(8)Å,b = 27.3177(14)Å,c = 9.7584(6)Å,α= 90°,β= 90°,γ= 90° ,V = 3668.2(4)Å 3 且Z =8。所有r个化合物具有相同的吲哚氮苯基磺酰基取代基,(I),(II)和(III)为腈衍生物。 (IV)是叔丁酰胺。在晶体中,吲哚和苯磺酰基的平均平面之间的二面角为85.4(2)°(I),87.2(7)°(II),75.1(7)°(III)和88.6(2) °(IV)。此外,进行了DFT几何优化的分子轨道计算,并显示了每种化合物的前沿分子轨道。已经提出了计算的前沿分子轨道表面的分子轨道能量(eV)与每种化合物的吸收光谱的电子激发跃迁之间的相关性。

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