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7-bromo-2,3-dihydro-6-hydroxy-5-isopropyl-1-methyl-4-(triisopropylsiloxy)-1H-phenalene | 160510-21-4

中文名称
——
中文别名
——
英文名称
7-bromo-2,3-dihydro-6-hydroxy-5-isopropyl-1-methyl-4-(triisopropylsiloxy)-1H-phenalene
英文别名
9-bromo-6-methyl-2-propan-2-yl-3-tri(propan-2-yl)silyloxy-5,6-dihydro-4H-phenalen-1-ol
7-bromo-2,3-dihydro-6-hydroxy-5-isopropyl-1-methyl-4-(triisopropylsiloxy)-1H-phenalene化学式
CAS
160510-21-4
化学式
C26H39BrO2Si
mdl
——
分子量
491.584
InChiKey
GTLULIVDDPCHPE-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

计算性质

  • 辛醇/水分配系数(LogP):
    9.04
  • 重原子数:
    30
  • 可旋转键数:
    6
  • 环数:
    3.0
  • sp3杂化的碳原子比例:
    0.62
  • 拓扑面积:
    29.5
  • 氢给体数:
    1
  • 氢受体数:
    2

上下游信息

  • 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:
    参考文献:
    名称:
    Total Synthesis of the Phenalenone Diterpene Salvilenone
    摘要:
    The application of a photochemical aromatic annulation strategy in a highly efficient total synthesis of the phenalenone diterpene salvilenone is reported. The pivotal step in the synthesis involves the assembly of the key dihydrophenalene 29 in one step via an annulation involving the siloxyalkyne 28 and either diazo ketone 8 or 9. The synthesis of the alpha-benzosuberone 8 was achieved in three steps beginning with 2-methylcyclopentanone by a route featuring an ''aryne-enolate condensation'' reaction. The alternative aromatic annulation substrate, the beta-benzosuberone 9, was prepared in four steps by a route based on the regiocontrolled ring expansion of the alpha-methylenetetralin 27. The key aromatic annulation was then accomplished by irradiating a mixture of either diazo ketone 8 or 9 and 1.4 equiv of the siloxyalkyne 28 in 1,2-dichloroethane at 20-25 degrees C using a standard Rayonet photochemical reactor. The reaction mixture was next diluted with an equal volume of solvent and heated overnight at 80 degrees C to complete the annulation; concentration and chromatographic purification furnished the tricyclic phenol 29 as colorless crystals in 60-71% yield. Finally, annulation of the furan ring and oxidation required three steps and provided the phenalenone diterpene in good yield. The synthetic routes described herein provide access to salvilenone in only seven or eight steps (via the alpha- and beta-benzosuberone strategies, respectively), half the number of steps required using the classical linear substitution approach reported previously. These highly efficient syntheses demonstrate the ability of the photochemical aromatic annulation strategy to dramatically streamline the synthesis of polycyclic aromatic compounds.
    DOI:
    10.1021/ja00100a009
  • 作为产物:
    参考文献:
    名称:
    Total Synthesis of the Phenalenone Diterpene Salvilenone
    摘要:
    The application of a photochemical aromatic annulation strategy in a highly efficient total synthesis of the phenalenone diterpene salvilenone is reported. The pivotal step in the synthesis involves the assembly of the key dihydrophenalene 29 in one step via an annulation involving the siloxyalkyne 28 and either diazo ketone 8 or 9. The synthesis of the alpha-benzosuberone 8 was achieved in three steps beginning with 2-methylcyclopentanone by a route featuring an ''aryne-enolate condensation'' reaction. The alternative aromatic annulation substrate, the beta-benzosuberone 9, was prepared in four steps by a route based on the regiocontrolled ring expansion of the alpha-methylenetetralin 27. The key aromatic annulation was then accomplished by irradiating a mixture of either diazo ketone 8 or 9 and 1.4 equiv of the siloxyalkyne 28 in 1,2-dichloroethane at 20-25 degrees C using a standard Rayonet photochemical reactor. The reaction mixture was next diluted with an equal volume of solvent and heated overnight at 80 degrees C to complete the annulation; concentration and chromatographic purification furnished the tricyclic phenol 29 as colorless crystals in 60-71% yield. Finally, annulation of the furan ring and oxidation required three steps and provided the phenalenone diterpene in good yield. The synthetic routes described herein provide access to salvilenone in only seven or eight steps (via the alpha- and beta-benzosuberone strategies, respectively), half the number of steps required using the classical linear substitution approach reported previously. These highly efficient syntheses demonstrate the ability of the photochemical aromatic annulation strategy to dramatically streamline the synthesis of polycyclic aromatic compounds.
    DOI:
    10.1021/ja00100a009
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文献信息

  • Total Synthesis of the Phenalenone Diterpene Salvilenone
    作者:Rick L. Danheiser、Anna L. Helgason
    DOI:10.1021/ja00100a009
    日期:1994.10
    The application of a photochemical aromatic annulation strategy in a highly efficient total synthesis of the phenalenone diterpene salvilenone is reported. The pivotal step in the synthesis involves the assembly of the key dihydrophenalene 29 in one step via an annulation involving the siloxyalkyne 28 and either diazo ketone 8 or 9. The synthesis of the alpha-benzosuberone 8 was achieved in three steps beginning with 2-methylcyclopentanone by a route featuring an ''aryne-enolate condensation'' reaction. The alternative aromatic annulation substrate, the beta-benzosuberone 9, was prepared in four steps by a route based on the regiocontrolled ring expansion of the alpha-methylenetetralin 27. The key aromatic annulation was then accomplished by irradiating a mixture of either diazo ketone 8 or 9 and 1.4 equiv of the siloxyalkyne 28 in 1,2-dichloroethane at 20-25 degrees C using a standard Rayonet photochemical reactor. The reaction mixture was next diluted with an equal volume of solvent and heated overnight at 80 degrees C to complete the annulation; concentration and chromatographic purification furnished the tricyclic phenol 29 as colorless crystals in 60-71% yield. Finally, annulation of the furan ring and oxidation required three steps and provided the phenalenone diterpene in good yield. The synthetic routes described herein provide access to salvilenone in only seven or eight steps (via the alpha- and beta-benzosuberone strategies, respectively), half the number of steps required using the classical linear substitution approach reported previously. These highly efficient syntheses demonstrate the ability of the photochemical aromatic annulation strategy to dramatically streamline the synthesis of polycyclic aromatic compounds.
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同类化合物

迫萘合環己-1,3-二酮 赫金青霉素 萘嵌苯酮 富拉烯酮 9-羟基-萘嵌苯-1-酮 9-甲基氨基-萘嵌苯-1-酮 9-巯基-萘嵌苯-1-酮 9-去甲基FR-901235 9-二甲基氨基-1H-萘嵌苯-1-酮 9-丁氧基-1H-萘嵌苯-1-酮 6b,7a-二氢-7H-环丙并[a]苊烯-7-胺盐酸盐(1:1) 6-羟基-3-甲基-1H-萘嵌苯-1-酮 6-羟基-1H-萘嵌苯-1-酮 6-溴-1H-萉 6-氨基-1-萉酮 3-羟基-1H-PHENALEN-1-酮 2-甲氧基非那烯酮 2-甲基-1-氧代-1H-非那烯-3-乙酸 2-氯-6-(3-羟基丙基)氨基-1H-萉-1-酮 2,3-二氢-6-甲氧基萘嵌苯-1-酮 2,3-二氢-1H-萉 2,3-二氢-1H-苯并-1-酮 1H-非那烯并[2,1-d][1,3]噻唑 1H-非那烯 1H-萘嵌苯-1-酮腙 1-硫酮-9-甲基氨基-非那烯 (R)-8,9-二氢-4,5,6,7-四羟基-1,8,8,9-四甲基-3H-非那烯并(1,2-b)呋喃-3-酮 2-hydroxy-2-piperidino-phenalene-1,3-dione 9-[(4-pyrimidin-2-yl)piperazin-1-yl]-1H-phenalen-1-one N-[2-(4,9-dimethoxy-2,3-dihydro-1H-1-phenalenyl)ethyl]butanamide N-[2-(9-methoxy-2,3-dihydro-1H-1-phenalenyl)ethyl]butanamide 9-methyl-9-(2-methylpropenyl)-8,9-dihydrophenaleno[1,2-b]furan-7-one 3-((cyclohexylmethyl)amino)-6-(cyclohexylthio)-1-oxo-1H-phenalene-2-carbonitrile 9-(4-benzylpiperazin-1-yl)-1H-phenalen-1-one perchlorophenalenyl radical 6-((4-bromophenyl)thio)-1-oxo-1H-phenalene-2,3-dicarbonitrile methyl 3-((6-((4-bromophenyl)thio)-2-cyano-1-oxo-1H-phenalen-3-yl)amino)propanoate 3-((6-((4-bromophenyl)thio)-2-cyano-1-oxo-1H-phenalen-3-yl)amino)propanoic acid 3-((6-((4-bromophenyl)thio)-2-cyano-1-oxo-1H-phenalen-3-yl)amino)-N-(2-(2-hydroxyethoxy)ethyl)propanamide 1,1-dimethyl-1a,11b-dihydro-1H-benzo[k]cyclopropa[4,5]cyclopent[1,2,3-cd]fluoranthene 6-(cyclopentylthio)-1-oxo-1H-phenalene-2,3-dicarbonitrile 5-propyl-9-hydroxyphenalenone N-[2-(4,9-dimethoxy-2,3-dihydro-1H-1-phenalenyl)ethyl]propanamide N-[2-(4-methoxy-2,3-dihydro-1H-1-phenalenyl)ethyl]propanamide N-benzyl-1,2,3,10-tetrahydronaphtho[1,8-fg]indol-7-yl trifluoromethanesulfonate N-benzyl-7-ethyl-1,2,3,10-tetrahydronaphtho[1,8-fg]indole 1-oxo-1H-phenalene-2,3-dicarbonitrile 1-((1-oxo-1H-phenalen-2-yl)methyl)pyridinium chloride 9-[(2-hydroxyethyl)(methyl)amino]-1H-phenalen-1-one 6-phenylsulfanyl-2,3-dicyanophenalenone