Home Physical Sciences Crystal structure of bis(4,4,5,5-tetramethyl-1,3,2-dioxaborolane)-9,9-dioctylfluorene, C41H64B2O4
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Crystal structure of bis(4,4,5,5-tetramethyl-1,3,2-dioxaborolane)-9,9-dioctylfluorene, C41H64B2O4

  • Yingfan Liu , Kaiming Mao , Xiaochuan Li EMAIL logo and Young-A Son
Published/Copyright: October 16, 2017

Abstract

C41H64B2O4, triclinic P1̅ (no. 2), a = 12.8189(8) Å, b = 13.4808(9) Å, c = 14.1592(12) Å, α = 110.394(3)°, β = 90.170(1)°; γ = 115.623(3)°; V = 2033.5(3) Å3, Z = 2, Rgt(F) = 0.0562, wRref(F2) = 0.1629 , T = 296 K.

CCDC no.: 1544209

The crystal structure is shown in the figure. Tables 1 and 2 contain details on crystal structure and measurement conditions and a list of the atoms including atomic coordinates and displacement parameters.

Table 1

Data collection and handling.

Crystal:Block, colourless
Size:0.10 × 0.17 × 0.15 mm
Wavelength:Mo Kα radiation (0.71073 Å)
μ:0.06 mm−1
Diffractometer, scan mode:Bruker SMART, φ and ω-scans
2θmax, completeness:20.1°, >99%
N(hkl)measured, N(hkl)unique, Rint:40607, 8001, 0.093
Criterion for Iobs, N(hkl)gt:Iobs > 2 σ(Iobs), 4054
N(param)refined:445
Programs:Bruker programs [1], SHELX [2], DIAMOND [3]
Table 2

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

AtomxyzUiso*/Ueq
B140.4188(2)0.3316(3)0.0820(2)0.0507(7)
B231.1053(2)0.2639(2)0.32668(18)0.0424(6)
C10.53085(18)0.34476(19)0.13781(15)0.0428(5)
C20.59989(18)0.44522(19)0.22562(16)0.0460(5)
H20.57630.50420.25200.055*
C30.70155(18)0.46007(18)0.27455(15)0.0436(5)
H30.74620.52800.33290.052*
C40.73628(16)0.37159(17)0.23516(14)0.0355(5)
C50.83877(16)0.36287(17)0.26961(13)0.0345(5)
C60.93078(18)0.43936(18)0.35139(14)0.0423(5)
H60.93560.51170.39500.051*
C71.01530(18)0.40692(18)0.36736(15)0.0432(5)
H71.07720.45870.42260.052*
C81.01160(17)0.29945(18)0.30392(14)0.0391(5)
C90.91865(17)0.22411(18)0.21986(15)0.0401(5)
H90.91480.15260.17520.048*
C100.83319(16)0.25494(17)0.20289(14)0.0359(5)
C110.72402(16)0.18556(17)0.11911(14)0.0367(5)
C120.66874(17)0.26940(17)0.14778(14)0.0358(5)
C130.56718(17)0.25651(18)0.09969(15)0.0419(5)
H130.52250.18850.04140.050*
C160.2766(2)0.3773(2)0.04381(19)0.0605(7)
C170.2540(3)0.2544(3)−0.0353(2)0.0860(9)
C190.1819(3)0.3770(4)0.1045(3)0.1287(14)
H19A0.11150.35280.05970.193*
H19B0.16680.32220.13760.193*
H19C0.20630.45570.15530.193*
C200.3073(3)0.4731(3)0.0026(3)0.1307(14)
H20A0.24100.4531−0.04510.196*
H20B0.32750.54780.05800.196*
H20C0.37310.4795−0.03170.196*
C210.1453(7)0.1481(8)−0.0010(6)0.097(2)
H21A0.16510.16690.07070.145*
H21B0.13910.0709−0.04020.145*
H21C0.07150.1473−0.01450.145*
C21A0.1502(9)0.1600(9)−0.0709(10)0.149(4)
H21D0.11680.1411−0.01510.224*
H21E0.15860.0936−0.11770.224*
H21F0.09930.1764−0.10610.224*
C220.2226(8)0.2116(10)−0.1427(6)0.107(3)
H22A0.16380.2321−0.15900.160*
H22B0.19180.1265−0.17150.160*
H22C0.29080.2472−0.17060.160*
C22A0.3034(8)0.2875(9)−0.1406(6)0.112(3)
H22D0.26540.3284−0.15750.168*
H22E0.28510.2148−0.19800.168*
H22F0.38700.3376−0.12400.168*
C251.2684(2)0.2753(2)0.40343(17)0.0545(6)
C261.2018(2)0.1535(2)0.31271(17)0.0534(6)
C281.3033(3)0.2699(3)0.50190(19)0.0934(10)
H28A1.36050.24080.49370.140*
H28B1.33660.34830.55530.140*
H28C1.23530.21720.51980.140*
C291.3734(2)0.3652(2)0.3767(2)0.0840(9)
H29A1.43360.34010.36690.126*
H29B1.34870.36960.31490.126*
H29C1.40400.44230.43160.126*
C301.1272(3)0.0520(3)0.3440(3)0.0944(10)
H30A1.17720.03580.38040.142*
H30B1.07680.07360.38750.142*
H30C1.0801−0.01800.28410.142*
C311.2774(3)0.1186(3)0.2397(2)0.0857(9)
H31A1.33180.10560.27430.129*
H31B1.22820.04670.18200.129*
H31C1.32030.18150.21650.129*
C320.64306(18)0.06334(18)0.12105(15)0.0451(5)
H32A0.57260.02620.07000.054*
H32B0.68250.01400.10020.054*
C330.6059(2)0.0619(2)0.22192(17)0.0582(6)
H33A0.56060.10550.24110.070*
H33B0.67540.10210.27460.070*
C340.5324(2)−0.0643(2)0.21643(19)0.0709(7)
H34A0.4594−0.10080.16870.085*
H34B0.5744−0.10990.18870.085*
C350.5037(3)−0.0741(2)0.3143(2)0.0841(9)
H35A0.4543−0.03600.33840.101*
H35B0.5761−0.03020.36430.101*
C360.4411(3)−0.2016(2)0.3098(2)0.0811(8)
H36A0.3660−0.24410.26370.097*
H36B0.4879−0.24160.28160.097*
C370.4203(2)−0.2088(2)0.4117(2)0.0770(8)
H37A0.3723−0.17000.43920.092*
H37B0.4953−0.16460.45820.092*
C380.3612(2)−0.3331(2)0.4095(2)0.0750(8)
H38A0.4097−0.37180.38370.090*
H38B0.2865−0.37820.36240.090*
C390.3398(3)−0.3364(3)0.5130(2)0.0921(9)
H39A0.3019−0.41780.50710.138*
H39B0.4136−0.29350.55960.138*
H39C0.2903−0.29990.53830.138*
C400.75755(18)0.16616(18)0.01183(14)0.0440(5)
H40A0.80150.12110.00170.053*
H40B0.68550.1170−0.03880.053*
C410.8289(2)0.27638(19)−0.00976(16)0.0500(6)
H41A0.89820.32970.04350.060*
H41B0.78240.3177−0.00770.060*
C420.8669(2)0.2475(2)−0.11318(16)0.0537(6)
H42A0.91190.2049−0.11470.064*
H42B0.79690.1938−0.16560.064*
C430.9392(2)0.3519(2)−0.14103(18)0.0635(7)
H43A1.00400.4108−0.08470.076*
H43B0.89080.3883−0.14920.076*
C440.9887(2)0.3206(2)−0.23837(18)0.0670(7)
H44A1.04620.3942−0.24270.080*
H44B1.02990.2765−0.23290.080*
C450.8997(2)0.2484(2)−0.33625(17)0.0636(7)
H45A0.86590.2968−0.34650.076*
H45B0.83660.1800−0.32860.076*
C460.9472(2)0.2041(3)−0.4314(2)0.0755(8)
H46A1.00880.2725−0.44030.091*
H46B0.98250.1571−0.42090.091*
C470.8568(3)0.1301(3)−0.5276(2)0.1083(12)
H47A0.89320.1055−0.58420.162*
H47B0.79630.0610−0.52040.162*
H47C0.82270.1764−0.53990.162*
O150.37965(15)0.41385(17)0.11384(14)0.0836(6)
O180.35014(15)0.23786(16)−0.00405(13)0.0765(5)
O241.18142(12)0.31967(13)0.41708(10)0.0534(4)
O271.12032(13)0.17268(13)0.25826(11)0.0572(4)

Source of material

The title structure was synthesized according to published procedures [4, 5] . The colorless crystals of the title compound were obtained by slow evaporation of a hexane solution at room temperature.

Experimental details

The hydrogen atoms were placed geometrically and refined using a riding model with d(C–H) = 0.93 Å (aromatic), 0.96 Å (-CH3), 0.97 Å (-CH2-), Uiso(H) = 1.2 Ueq(C) for CH and CH2 groups or Uiso(H) = 1.5 Ueq(C) for CH3 groups. Two methyl groups bonded to the oxygen atom are disorded.

Discussion

Small fluorescent molecules have been developed due to the easy structural modification and tunable photophysical properties in various functional design, such as molecular machine, logic operation, OLEDs [6], [7], [8], [9]. Fluorene is a typical blue fluorescent molecule and used as building block in functional polymers. The title crystal structure was built up from C41H64B2O4 molecules only. Two eight-membered alkyl chains stretch to both sides of the fluorene ring, which is configured by intramolecular C–H⋯π interactions: C33–H33A⋯πi1 (C1/C2/C3/C4/C12/C13, i: x, y, x), C33–H33B⋯πi1 (C5/C6/C7/C8/C9/C10), C44–H41A⋯πi1 (C5/C6/C7/C8/C9/C10), C44–H41B⋯πi1 (C1/C2/C3/C4/C12/C13). The H⋯centroid distances range from 3.301 to 3.479 Å, which is inside the interval classified by Malone of 2.65–4.00 Å, based on a survey of the Cambridge Structural Database together with semi-empirical and ab initio molecular orbital calculations [10]. There is no doubt that the fluorine ring is planar with a mean deviation of 0.007 Å. However, the two oxaborolane rings are totally different in configuration. One of the oxaborolane rings is planar with a mean deviation of 0.014 Å. While the other one is folded and the mean deviation is calculated to be 0.108 Å. The above intermolecular interactions pack molecules layer by layer with the plane of fluorine and oxaborolane ring parallel to each other.

Acknowledgement

This work was supported by the National Natural Science Foundation of China (21272060). This work was supported by the industrial Fundamental Technology Development Program (10076350) funded by the Ministry of Trade, Industry and Energy (MOTIE) of Korea.

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Received: 2017-5-26
Accepted: 2017-9-29
Published Online: 2017-10-16
Published in Print: 2017-11-27

©2017 Yingfan Liu et al., published by De Gruyter, Berlin/Boston

This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.

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  54. Crystal structure of 1,1′-butanebis(3-methyl-1H-imidazol-3-ium)bis(hexafluorophosphate), C12H20F12N4P2
  55. (E)-N-benzylidene-3-(benzylthio)-5-p-tolyl-4H-1,2,4-triazol-4-amine, C23H20N4S
  56. Crystal structure of ethyl 5-methyl-1-(pyridin-3-yl)-1H-1,2,3-triazole-4-carboxylate, C11H12N4O2
  57. Crystal structure of 5,5-difluoro-10-(4-fluorophenyl)-1,3,7,9-tetramethyl-5H-4l4,5l4-dipyrrolo[1,2-c:2′,1′-f][1,3,2]diazaborinine - a Z′ = 3 structure, C19H18B2F3N2
  58. The crystal structure of the Matrine derivative: 12-(1H-indol-1-yl)dodecahydro-1H,5H,10H-dipyrido[2,1-f:3′,2′,1′-ij][1,6]naphthyridin-10-one hydrate, C23H29N3O
  59. The crystal structure of tris(μ2-1,3-bis(4,4,4-trifluoro-3-oxido-1-(oxo)but-2-en-1-yl)phenyl-κ4O,O′:O′′,O′′′)-bis(1,2-dimethoxyethane-κ2O,O′)dilutetium(III), C50H38F18Lu2O16
  60. The crystal structure of (Z)-2-(3-(2-(4-chlorobenzoyl)hydrazono)-2-oxoindolin-1-yl) acetic acid, C17H12ClN3O4
  61. Synthesis and crystal structure of trans-tetraqua-bis(2-(((7-hydroxy-3-(4-hydroxy-3-sulfonatophenyl)-4-oxo-4H-chromen-8-yl)methyl)ammonio)acetato-κO)cobalt(II) hexahydrate, C36H48CoN2O28S2
  62. The crystal structure of N,N-dimethyl-2,6-di-p-tolylpyrimidin-4-amine, C20H21N3
  63. The crystal structure (E)-4-methyl-N′-(2-nitrobenzylidene)benzenesulfonohydrazide, C14H13N3O4S
  64. Crystal structure of catena-poly[(μ2-1,3-bis(benzimidazol-1-yl)propane κ2N:N′)-(μ2-5-methoxyisophthalato-κ2O:O′)zinc(II)] hydrate, C26H24ZnN4O6
  65. The crystal structure of (E)-N′-(quinolin-2-ylmethylene)furan-2-carbohydrazide monohydrate, C15H13N3O3
  66. Crystal structure of 2,8-diphenyl-3,7,9-trioxa-1-azaspiro[4.5]dec-1-ene, C18H17N1O3
  67. Crystal structure of diethyl 2-(4-chlorophenyl)-1,3-dioxane-5,5-dicarboxylate, C16H19ClO6
  68. Crystal structure of 1-(carboxymethyl)-1H-benzo[d][1,2,3]triazole 3-oxide, C8H7N3O3
  69. Crystal structure of (acetylacetonato-κ2O,O′)-(2-amino-6-chlorobenzoato-κO)-oxido(1,10-phenanthroline-κ2N,N′)vanadium(IV) – trichloromethane (1/1)
  70. Crystal structure of (1E,4E)-1,5-bis(4-chlorophenyl)penta-1,4-dien-3-one, C17H12Cl2O
  71. The crystal structure of trans-dibromido-bis(pyridine-κN)platinum(II), C10H10Br2N2Pt
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