Home Physical Sciences Structure of 7-(3,3,4,4,5,5-hexafluoro-2-(2-methylbenzo[b]thiophen-3-yl)cyclopent-1-en-1-yl)-8-methylquinoline, C24H15F6NS
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Structure of 7-(3,3,4,4,5,5-hexafluoro-2-(2-methylbenzo[b]thiophen-3-yl)cyclopent-1-en-1-yl)-8-methylquinoline, C24H15F6NS

  • Jianlan Kou ORCID logo EMAIL logo
Published/Copyright: June 23, 2020

Abstract

C24H15F6NS, monclinic, P21/n (no. 14), a = 10.5279(11) Å, b = 21.242(2) Å, c = 10.7096(11) Å, β = 119.1850(10)°, V = 2091.0(4) Å3, Z = 4, Rgt(F) = 0.0488, wRref(F2) = 0.1441, T = 296(2) K.

CCDC no.: 2009033

The molecular structure is shown in the figure. Table 1 contains crystallographic data and Table 2 contains the list of the atoms including atomic coordinates and displacement parameters.

Table 1:

Data collection and handling.

Crystal:Colorless block
Size:0.26 × 0.24 × 0.23 mm
Wavelength:Mo Kα radiation (0.71073 Å)
μ:0.22 mm−1
Diffractometer, scan mode:Bruker Apex II, φ and ω
θmax, completeness:25.0°, >99%
N(hkl)measured, N(hkl)unique, Rint:16435, 3670, 0.017
Criterion for Iobs, N(hkl)gt:Iobs > 2 σ(Iobs), 2954
N(param)refined:291
Programs:CrysAlisPRO [1], SHELX [2], [3], [4], Bruker [5]
Table 2:

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2).

AtomxyzUiso*/Ueq
C11.0959(3)0.34164(17)0.4542(3)0.0835(9)
H11.15130.31480.43140.100*
C21.1661(3)0.37325(18)0.5842(3)0.0870(9)
H21.26510.36730.64550.104*
C31.0893(3)0.41231(16)0.6198(3)0.0759(8)
H31.13490.43430.70580.091*
C40.9386(3)0.42004(12)0.5263(2)0.0546(6)
C50.8760(2)0.38626(10)0.3960(2)0.0480(5)
N10.9569(2)0.34699(11)0.3612(2)0.0660(6)
C70.7245(2)0.39215(10)0.2954(2)0.0440(5)
C80.6411(2)0.43086(10)0.3304(2)0.0447(5)
C90.7063(3)0.46419(11)0.4626(2)0.0575(6)
H90.64910.49040.48450.069*
C100.8494(3)0.45847(13)0.5567(3)0.0630(6)
H100.88910.48030.64280.076*
C110.6653(3)0.35731(12)0.1567(2)0.0565(6)
H11A0.64520.31450.17030.085*
H11B0.73560.35790.12410.085*
H11C0.57730.37720.08680.085*
C120.4836(2)0.44176(9)0.2329(2)0.0445(5)
C130.4277(3)0.50805(11)0.1908(3)0.0567(6)
C140.2718(3)0.50079(12)0.0706(3)0.0667(7)
C150.2296(3)0.43472(12)0.0931(3)0.0596(6)
C160.3725(2)0.40092(10)0.1763(2)0.0479(5)
C170.3752(2)0.33274(10)0.2023(3)0.0519(5)
C180.3390(3)0.28746(12)0.0999(3)0.0717(8)
C190.2985(3)0.29436(18)−0.0549(4)0.0958(11)
H19A0.31560.3369−0.07290.144*
H19B0.19740.2843−0.11400.144*
H19C0.35660.2663−0.07650.144*
C200.3977(3)0.24196(12)0.3364(4)0.0791(9)
C210.4116(2)0.30807(10)0.3404(3)0.0575(6)
C220.4542(3)0.33917(12)0.4705(3)0.0609(6)
H220.46420.38270.47550.073*
C230.4811(3)0.30562(16)0.5900(4)0.0841(9)
H230.51130.32640.67640.101*
C240.4635(4)0.2405(2)0.5831(5)0.1056(13)
H240.47980.21840.66460.127*
F10.50921(19)0.54350(7)0.1536(2)0.0874(5)
F20.4252(2)0.53976(7)0.30017(18)0.0895(6)
F30.1823(2)0.54553(8)0.0668(3)0.1131(7)
F40.2720(2)0.50251(9)−0.05613(18)0.0980(6)
F50.15824(18)0.43741(9)0.1689(2)0.0891(5)
F60.13701(16)0.40776(8)−0.03272(17)0.0807(5)
C250.4231(4)0.20870(16)0.4595(6)0.1060(14)
H250.41230.16520.45650.127*
S10.34820(9)0.21291(3)0.16844(12)0.0981(4)

Source of material

The title compound was prepared according to the literature method [6], [7] in 40.32% yield. The title compound crystallized from hexane at room temperature and produced colorless crystals.

Experimental details

The hydrogen atoms were located by geometrically calculations, and their positions and thermal parameters were fixed during the structure refinement. All H atoms attached to C were fixed geometrically and treated as riding with C—H = 0.96 Å (methyl) or 0.93 Å (phenzyl and quinolinyl) with Uiso(H) = 1.5Ueq (methyl).

Comment

It is well known that organic optical switch materials have received considerable attention because of their promising applications in the fields of optical memories and switches [8], [9], [10], solor energy [11], sensors [12], [13], and so on. Among these optical switch compounds, diarylethenes are regarded as the best promising candidates for their reversible cyclization/cycloreversion photoreaction upon alternating irradiation with UV and visible light [14], [15]. Up to date, design and synthesis of new diarylethenes bearing different aryl moieties has become an active area of research. Many research works had reported various types of photochromic diarylethenes and their fundamental properties [16], [17]. The result demonstrated that the photochromic characteristics of diarylethenes strongly depend on the kind of the heteroaryl moieties and their substituents [18], [19]. Some research reported found that part of them can exhibit the properties of photochromism in solid state and in solution [20]. However, some of them cannot show the photochromism in solid state, but they can represent good photochromism characteristics in solution [21]. Herein, a new diarylethene crystal was obtain that cannot show photochromism in solid state, but it can act in solution.

In the perfluorocyclopentene ring, the benzo[b]thiophenyl and quinolinyl ring are linked by the C12=C16 double bond (1.340(3) Å), which is shorter than the formal single bond (such as C12—C13, 1.508(3) Å and C16—C15, 1.505(3)) Å. The dihedral angle between the perfluorocyclopentene ring and the benzo[b]thiophenyl ring was 112.8°. The perfluorocyclopentene ring and the quinolinyl ring enclose an angle of 120.3°. The two methyl groups are located on one side of the C12=C16 double bond and this configuration is crucial to limit the compound to exhibit photochromic properties [22].

The molecular structure of the title compound is shown in Fig. top. The molecule adopts a parallel conformation, and the distance between the photoactive carbon atoms (C7—C18) was 4.185 Å [23]. The former researchers’ results illustrated that the parallel crystal could not display color change upon irradiation by UV light [22]. When the colorless crystals were dissolved in hexane, with an absorption maximum at 290 nm this is consistent with the presence of the open-ring isomer. The colorless hexane solution could revert to a red state with an absorption maximum at 522 nm upon irradiation with 297 nm irradiation. When the red solution was irradiated with visible light (larger than 500 nm), the absorption spectrum of a hexane solution returned to colorless.

Acknowledgements

This work was supported by the Science and technology Project of Health Commission of Jiangxi Province (20202026). We thank the editor for providing the figure.

References

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Received: 2020-05-20
Accepted: 2020-06-10
Published Online: 2020-06-23
Published in Print: 2020-08-26

©2020 Jianlan Kou, published by De Gruyter, Berlin/Boston

This work is licensed under the Creative Commons Attribution 4.0 International License.

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  57. The crystal structure of 1-carboxy-2-(1H-indol-3-yl)-N,N,N-trimethylethan-1-ammonium chloride, C14H19N2O2Cl
  58. The crystal structure of 5-bromo-2-fluoronicotinic acid monohydrate, C6H5BrFNO3
  59. Crystal structure of ethyl 3-(trifluoromethyl)-1H-pyrazole-4-carboxylate, C7H7F3N2O2
  60. Crystal structure of tetrakis(1H-benzo[d]imidazol-3-ium) bis(μ5-phenylphosphonato)-pentakis(μ2-oxido)-decaoxo-penta-molybdenum dihydrate, C40H42Mo5N8O23P2
  61. Structure of 7-(3,3,4,4,5,5-hexafluoro-2-(2-methylbenzo[b]thiophen-3-yl)cyclopent-1-en-1-yl)-8-methylquinoline, C24H15F6NS
  62. Crystal structure of monocarbonyl[2-((cyclopentylmethylene)amino)-5-methylphenolato-κ2N,O] (tricyclohexylphosphine)rhodium(I), C32H48NO2PRh
  63. The crystal structure of fac-tricarbonyl(1,10-phenanthroline-κ2N,N′)-(pyrazole-κN)rhenium(I)nitrate, C18H12O3N4Re
  64. Crystal structure of poly[diaqua-bis(μ2-4-(3-(pyridin-3-yl)-1H-1,2,4-triazol-5-yl)benzoato-κ2N:O)nickel(II)], C28H22O6N8Ni
  65. Crystal structure of 4,4′-bis(pyridin-1-ium-4-yl)biphenyl poly[bis(μ2-4,4′-bis(pyrid-4-yl)biphenyl-K2N:N′)-tetrakis(μ4-4′-methyl-[1,1′-biphenyl]-3,5-dicarboxylato-K4O,O′:O′′:O′′′)-bis[[μ2-1,1′-biphenyl]-3-carboxyl-5-carboxylato-K2O:O′]tetracobalt(II)]— [1,1′-biphenyl]-3,5-dicarboxylic acid (1/2), C93H68N3O16Co2
  66. The crystal structure of 4a-formyl-1,2,3,4,4a,5,6,6a,6b,7,8,8a,9,10,11,12,12a,12b,13,14b-icosahydro-1-2-6a,6b,9,9,12a-heptamethylpicen-10-yl acetate, C32H50O3
  67. Crystal structure of 3,3′-(1,2-phenylenebis(methylene))bis(1-methyl-1H-imidazol-3-ium) bis(hexafluoridophosphate), C16H20F12N4P2
  68. Crystal structure of catena-poly[diaqua-(μ2-tartrato-κ4O,O′:O′′,O′′′)zinc(II)], C4H8O8Zn
  69. The crystal structure of (6aR,6bS,8aS,8bR,9S,11aS,12aS,12bS)-10-(4-acetoxy-3-methylbutyl)-6a,8a,9-trimethyl-3,4,5,6,6a,6b,7,8,8a,8b,9,10,11a,12,12a,12b-hexadecahydro-1H-naphtho[2′,1′:4,5]indeno[2,1-b]furan-4-yl acetate, C31H48O5
  70. Crystal structure of 4,4′-(oxybis(methylene))bis(bromobenzene), C14H12Br2O
  71. Crystal structure of (N,N-dimethylsulphoxide)-[N-(3-ethoxy-2-(oxide)benzylidene)-3-methoxybenzenecarbohydrazonato-κ3N,O,O′]-dioxo-molybdenum(VI), C19H22MoN2O7S
  72. Crystal structure of dichlorido-bis(dimethyl sulphoxide-κO)-bis(4-methylbenzyl-κC1)tin(IV), C20H30Cl2O2S2Sn
  73. Crystal structure of (E)-2-amino-N′-(2-hydroxy-4-(2-(piperidin-1-yl)ethoxy)benzylidene)benzohydrazide monohydrate, C21H26N4O3 ⋅ H2O
  74. Crystal structure of chloridotris(4-chlorophenyl)(dimethyl sulfoxide-κO)tin(IV), C20H18Cl4OSSn
  75. Crystal structure of catena{di-aqua-sodium-[N-(hydroxyethyl), N-isopropyl-dithiocarbamato]}n, [C6H16NNaO2S2]n
  76. Crystal structure of 2,2,4,4,6,6-hexakis(4-chlorophenyl)-1,3,5,2,4,6-trithiatristanninane, C36H24Cl6S3Sn3
  77. Crystal structure of 6-methoxy-3-(5-(3-methoxyphenyl)-1,3,4-oxadiazol-2-yl)-4H-chromen-4-one-methanol (1/1), C20H18N2O6
  78. Crystal structure of hexanedihydrazide, C6H14N4O2
  79. Crystal structure of tert-butyl 2-(hydroxymethyl)-5-{4-[(methoxycarbonyl)amino]phenyl}-2,5-dihydro-1H-pyrrole-1-carboxylate, C18H24N2O5
  80. Crystal structure of [(Z)-O-isopropyl N-(4-nitrophenyl)thiocarbamato-κS]-(triphenylphosphine-κP)-gold(I), C28H26AuN2O3PS
  81. Crystal structure of [O-ethyl N-(4-nitrophenyl)thiocarbamato-κS](tri-4-tolylphosphine-κP)gold(I) tetrahydrofuran solvate, C30H30AuN2O3PS, C4H8O
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