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2-氟-1-(4-硝基苯基)乙醇 | 40733-89-9

中文名称
2-氟-1-(4-硝基苯基)乙醇
中文别名
——
英文名称
(+/-)-2-fluoro-1-(4-nitrophenyl)ethanol
英文别名
2-fluoro-1-(4-nitrophenyl)ethanol;2-Fluoro-1-(4-nitrophenyl)ethan-1-ol
2-氟-1-(4-硝基苯基)乙醇化学式
CAS
40733-89-9
化学式
C8H8FNO3
mdl
——
分子量
185.155
InChiKey
ALYBAZKHBOZEHB-UHFFFAOYSA-N
BEILSTEIN
——
EINECS
——
  • 物化性质
  • 计算性质
  • ADMET
  • 安全信息
  • SDS
  • 制备方法与用途
  • 上下游信息
  • 反应信息
  • 文献信息
  • 表征谱图
  • 同类化合物
  • 相关功能分类
  • 相关结构分类

物化性质

  • 沸点:
    341.5±37.0 °C(Predicted)
  • 密度:
    1.343±0.06 g/cm3(Predicted)

计算性质

  • 辛醇/水分配系数(LogP):
    1.2
  • 重原子数:
    13
  • 可旋转键数:
    2
  • 环数:
    1.0
  • sp3杂化的碳原子比例:
    0.25
  • 拓扑面积:
    66
  • 氢给体数:
    1
  • 氢受体数:
    4

安全信息

  • 海关编码:
    2906299090

SDS

SDS:e429d19c3f98a8f170f5e80d0954e579
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上下游信息

  • 上游原料
    中文名称 英文名称 CAS号 化学式 分子量
  • 下游产品
    中文名称 英文名称 CAS号 化学式 分子量

反应信息

  • 作为反应物:
    描述:
    邻苯二甲酸亚胺2-氟-1-(4-硝基苯基)乙醇四氢呋喃三苯基膦偶氮二甲酸二乙酯 作用下, 以 甲苯 为溶剂, 反应 3.0h, 生成 (S)-2-(2-fluoro-1-(4-nitrophenyl)ethyl)isoindoline-1,3-dione 、 (R)-2-(2-fluoro-1-(4-nitrophenyl)ethyl)isoindoline-1,3-dione 、 对硝基苯乙酮
    参考文献:
    名称:
    对映体富集的1-芳基-2-氟乙胺。高效脂肪酶催化的拆分和对Mitsunobu转化方案的限制
    摘要:
    八个1-芳基-2-氟乙胺的两种对映体均以1-芳基-2-氟乙酮为原料合成。使用南极假丝酵母的脂肪酶B和甲氧基乙酸乙酯作为酰基供体对胺进行动力学拆分,得到96.99%ee的(R)-胺和> 99.5%ee的(S)-甲氧基乙酰胺。关于反应温度,酰基给体浓度,水活度和底物结构的变化,分离度很强。其他九种脂肪酶制剂未能催化该反应或对映选择性低。其次,在合成((S)时,采用以苯二甲酰亚胺为亲核试剂的对映体富集的1-芳基-2-氟乙醇为原料的Mitsunobu转化方案。)-1-芳基-2-氟乙胺。转化效率和产率均取决于芳族取代基。对于六种底物,观察到立体化学的完全反转。但是,当芳族环上存在供电子性取代基时,外消旋化和低收率是结果。当用氰基或硝基取代时,会发生意想不到的氟消除,从而限制了这些转化的收率。使用圆二色性确定1-芳基-2-氟乙胺的绝对构型。
    DOI:
    10.1016/j.tet.2010.06.081
  • 作为产物:
    描述:
    2-fluoro-1-(4-nitrophenyl)ethanone 在 sodium tetrahydroborate 作用下, 生成 2-氟-1-(4-硝基苯基)乙醇
    参考文献:
    名称:
    Asymmetric reduction using (R)-MeCBS and determination of absolute configuration of para-substituted 2-fluoroarylethanols
    摘要:
    The asymmetric reduction of eight alpha-fluoroacetophenones has been investigated using (R)-MeCBS as a catalyst in various media. Based on a solvent screen, 1,2-dimethoxyethane, diethyl ether and dichloromethane were used in reductions of the alpha-fluoroacetophenones. The enantiomeric excess of the products depended oil the solvent and the electronic character of the aromatic substituents. Higher enantioselectivity and less solvent dependency were observed in the reduction of substrates bearing electron donating substituents, whereas the opposite was the case for reduction of the substrates with electron withdrawing substituents. The (R)-2-fluoro-1-arylethanols were obtained with enantiomeric excesses in the range of 91-99% using 1,2-dimethoxyethane as a solvent. Six of the alcohols produced are new chemical entities. The absolute configurations of the (R)-2-fluoro-1-arylethanols were determined by circular dichroism using the exciton chirality method of tile (S)-benzoate esters of the alcohols. The (S)-benzoate esters were obtained by lipase-catalysed resolution using Novozym 435. (C) 2008 Elsevier Ltd. All Fights reserved.
    DOI:
    10.1016/j.tetasy.2008.07.019
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文献信息

  • Asymmetric reduction using (R)-MeCBS and determination of absolute configuration of para-substituted 2-fluoroarylethanols
    作者:Erik Fuglseth、Eirik Sundby、Per Bruheim、Bård Helge Hoff
    DOI:10.1016/j.tetasy.2008.07.019
    日期:2008.8
    The asymmetric reduction of eight alpha-fluoroacetophenones has been investigated using (R)-MeCBS as a catalyst in various media. Based on a solvent screen, 1,2-dimethoxyethane, diethyl ether and dichloromethane were used in reductions of the alpha-fluoroacetophenones. The enantiomeric excess of the products depended oil the solvent and the electronic character of the aromatic substituents. Higher enantioselectivity and less solvent dependency were observed in the reduction of substrates bearing electron donating substituents, whereas the opposite was the case for reduction of the substrates with electron withdrawing substituents. The (R)-2-fluoro-1-arylethanols were obtained with enantiomeric excesses in the range of 91-99% using 1,2-dimethoxyethane as a solvent. Six of the alcohols produced are new chemical entities. The absolute configurations of the (R)-2-fluoro-1-arylethanols were determined by circular dichroism using the exciton chirality method of tile (S)-benzoate esters of the alcohols. The (S)-benzoate esters were obtained by lipase-catalysed resolution using Novozym 435. (C) 2008 Elsevier Ltd. All Fights reserved.
  • Synthesis of Enantiopure Fluorohydrins Using Alcohol Dehydrogenases at High Substrate Concentrations
    作者:Wioleta Borzęcka、Iván Lavandera、Vicente Gotor
    DOI:10.1021/jo400962c
    日期:2013.7.19
    The use of purified and overexpressed alcohol dehydrogenases to synthesize enantiopure fluorinated alcohols is shown. When the bioreductions were performed with ADH-A from Rhodococcus ruber overexpressed in E. coli, no external cofactor was necessary to obtain the enantiopure (R)-derivatives. Employing Lactobacillus brevis ADH, it was possible to achieve the synthesis of enantiopure (S)-fluorohydrins at a 0.5 M substrate concentration. Furthermore, due to the activated character of these substrates, a huge excess of the hydrogen donor was not necessary.
  • Enantioenriched 1-aryl-2-fluoroethylamines. Efficient lipase-catalysed resolution and limitations to the Mitsunobu inversion protocol
    作者:Thor Håkon Krane Thvedt、Erik Fuglseth、Eirik Sundby、Bård Helge Hoff
    DOI:10.1016/j.tet.2010.06.081
    日期:2010.8
    inversion protocol starting with enantioenriched 1-aryl-2-fluoroethanols using phthalimide as nucleophile was employed in the synthesis of the (S)-1-aryl-2-fluoroethylamines. Both the inversion efficiency and yield depended on the aromatic substituents. For six of the substrates, clean inversion of the stereochemistry was observed. However, racemisation and low yields were the result when electron-donating
    八个1-芳基-2-氟乙胺的两种对映体均以1-芳基-2-氟乙酮为原料合成。使用南极假丝酵母的脂肪酶B和甲氧基乙酸乙酯作为酰基供体对胺进行动力学拆分,得到96.99%ee的(R)-胺和> 99.5%ee的(S)-甲氧基乙酰胺。关于反应温度,酰基给体浓度,水活度和底物结构的变化,分离度很强。其他九种脂肪酶制剂未能催化该反应或对映选择性低。其次,在合成((S)时,采用以苯二甲酰亚胺为亲核试剂的对映体富集的1-芳基-2-氟乙醇为原料的Mitsunobu转化方案。)-1-芳基-2-氟乙胺。转化效率和产率均取决于芳族取代基。对于六种底物,观察到立体化学的完全反转。但是,当芳族环上存在供电子性取代基时,外消旋化和低收率是结果。当用氰基或硝基取代时,会发生意想不到的氟消除,从而限制了这些转化的收率。使用圆二色性确定1-芳基-2-氟乙胺的绝对构型。
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同类化合物

(βS)-β-氨基-4-(4-羟基苯氧基)-3,5-二碘苯甲丙醇 (S)-(-)-7'-〔4(S)-(苄基)恶唑-2-基]-7-二(3,5-二-叔丁基苯基)膦基-2,2',3,3'-四氢-1,1-螺二氢茚 (S)-盐酸沙丁胺醇 (S)-3-(叔丁基)-4-(2,6-二甲氧基苯基)-2,3-二氢苯并[d][1,3]氧磷杂环戊二烯 (S)-2,2'-双[双(3,5-三氟甲基苯基)膦基]-4,4',6,6'-四甲氧基联苯 (S)-1-[3,5-双(三氟甲基)苯基]-3-[1-(二甲基氨基)-3-甲基丁烷-2-基]硫脲 (R)富马酸托特罗定 (R)-(-)-盐酸尼古地平 (R)-(+)-7-双(3,5-二叔丁基苯基)膦基7''-[((6-甲基吡啶-2-基甲基)氨基]-2,2'',3,3''-四氢-1,1''-螺双茚满 (R)-3-(叔丁基)-4-(2,6-二苯氧基苯基)-2,3-二氢苯并[d][1,3]氧杂磷杂环戊烯 (R)-2-[((二苯基膦基)甲基]吡咯烷 (N-(4-甲氧基苯基)-N-甲基-3-(1-哌啶基)丙-2-烯酰胺) (5-溴-2-羟基苯基)-4-氯苯甲酮 (5-溴-2-氯苯基)(4-羟基苯基)甲酮 (5-氧代-3-苯基-2,5-二氢-1,2,3,4-oxatriazol-3-鎓) (4S,5R)-4-甲基-5-苯基-1,2,3-氧代噻唑烷-2,2-二氧化物-3-羧酸叔丁酯 (4-溴苯基)-[2-氟-4-[6-[甲基(丙-2-烯基)氨基]己氧基]苯基]甲酮 (4-丁氧基苯甲基)三苯基溴化磷 (3aR,8aR)-(-)-4,4,8,8-四(3,5-二甲基苯基)四氢-2,2-二甲基-6-苯基-1,3-二氧戊环[4,5-e]二恶唑磷 (2Z)-3-[[(4-氯苯基)氨基]-2-氰基丙烯酸乙酯 (2S,3S,5S)-5-(叔丁氧基甲酰氨基)-2-(N-5-噻唑基-甲氧羰基)氨基-1,6-二苯基-3-羟基己烷 (2S,2''S,3S,3''S)-3,3''-二叔丁基-4,4''-双(2,6-二甲氧基苯基)-2,2'',3,3''-四氢-2,2''-联苯并[d][1,3]氧杂磷杂戊环 (2S)-(-)-2-{[[[[3,5-双(氟代甲基)苯基]氨基]硫代甲基]氨基}-N-(二苯基甲基)-N,3,3-三甲基丁酰胺 (2S)-2-[[[[[[((1R,2R)-2-氨基环己基]氨基]硫代甲基]氨基]-N-(二苯甲基)-N,3,3-三甲基丁酰胺 (2-硝基苯基)磷酸三酰胺 (2,6-二氯苯基)乙酰氯 (2,3-二甲氧基-5-甲基苯基)硼酸 (1S,2S,3S,5S)-5-叠氮基-3-(苯基甲氧基)-2-[(苯基甲氧基)甲基]环戊醇 (1-(4-氟苯基)环丙基)甲胺盐酸盐 (1-(3-溴苯基)环丁基)甲胺盐酸盐 (1-(2-氯苯基)环丁基)甲胺盐酸盐 (1-(2-氟苯基)环丙基)甲胺盐酸盐 (-)-去甲基西布曲明 龙胆酸钠 龙胆酸叔丁酯 龙胆酸 龙胆紫 龙胆紫 齐达帕胺 齐诺康唑 齐洛呋胺 齐墩果-12-烯[2,3-c][1,2,5]恶二唑-28-酸苯甲酯 齐培丙醇 齐咪苯 齐仑太尔 黑染料 黄酮,5-氨基-6-羟基-(5CI) 黄酮,6-氨基-3-羟基-(6CI) 黄蜡,合成物 黄草灵钾盐