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N-(tert-butoxycarbonyl)-N-(tert-butoxycarbonyloxy)-5,5-dimethyl-3-oxo-hexanoamide | 260782-37-4

中文名称
——
中文别名
——
英文名称
N-(tert-butoxycarbonyl)-N-(tert-butoxycarbonyloxy)-5,5-dimethyl-3-oxo-hexanoamide
英文别名
tert-butyl tert-butoxycarbonyloxy(5,5-dimethyl-3-oxohexanoyl)carbamate;Tert-butyl [(5,5-dimethyl-3-oxohexanoyl)-[(2-methylpropan-2-yl)oxycarbonyl]amino] carbonate
N-(tert-butoxycarbonyl)-N-(tert-butoxycarbonyloxy)-5,5-dimethyl-3-oxo-hexanoamide化学式
CAS
260782-37-4
化学式
C18H31NO7
mdl
——
分子量
373.447
InChiKey
PHNHDKBCKFRUNH-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):
    3.9
  • 重原子数:
    26
  • 可旋转键数:
    10
  • 环数:
    0.0
  • sp3杂化的碳原子比例:
    0.78
  • 拓扑面积:
    99.2
  • 氢给体数:
    0
  • 氢受体数:
    7

反应信息

  • 作为反应物:
    描述:
    N-(tert-butoxycarbonyl)-N-(tert-butoxycarbonyloxy)-5,5-dimethyl-3-oxo-hexanoamide盐酸 作用下, 以 甲醇 为溶剂, 反应 8.0h, 以90%的产率得到5-(2,2-二甲基丙基)-1,2-恶唑-3(2H)-酮
    参考文献:
    名称:
    5-取代的3-异恶唑醇的新颖途径。通过酰基麦德鲁姆酸合成的N,O-DiBocβ-酮异羟肟酸的环化反应。
    摘要:
    3-异恶唑醇最通常由β-酮酯和羟胺合成。该环化通常产生主要副产物,相应的5-异恶唑酮。我们已经发现,可以合成N,O-diBoc保护的β-酮异羟肟酸并将其环化成5-取代的3-异恶唑醇,而不会形成任何副产物。我们提出了一种新颖且通用的三步程序,其中将羧酸衍生物转化为酰基麦德鲁姆酸,当与N,O-双(叔丁氧基羰基)羟胺进行氨解后,会生成N,O-diBoc保护的β-酮异羟肟酸。然后,将这些异羟肟酸类似物用盐酸处理后,环化成相应的5-取代的3-异恶唑醇。
    DOI:
    10.1021/jo991409d
  • 作为产物:
    参考文献:
    名称:
    5-取代的3-异恶唑醇的新颖途径。通过酰基麦德鲁姆酸合成的N,O-DiBocβ-酮异羟肟酸的环化反应。
    摘要:
    3-异恶唑醇最通常由β-酮酯和羟胺合成。该环化通常产生主要副产物,相应的5-异恶唑酮。我们已经发现,可以合成N,O-diBoc保护的β-酮异羟肟酸并将其环化成5-取代的3-异恶唑醇,而不会形成任何副产物。我们提出了一种新颖且通用的三步程序,其中将羧酸衍生物转化为酰基麦德鲁姆酸,当与N,O-双(叔丁氧基羰基)羟胺进行氨解后,会生成N,O-diBoc保护的β-酮异羟肟酸。然后,将这些异羟肟酸类似物用盐酸处理后,环化成相应的5-取代的3-异恶唑醇。
    DOI:
    10.1021/jo991409d
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文献信息

  • A Novel Route to 5-Substituted 3-Isoxazolols. Cyclization of <i>N,O-</i>DiBoc β-Keto Hydroxamic Acids Synthesized via Acyl Meldrum's Acids
    作者:Ulrik S. Sørensen、Erik Falch、Povl Krogsgaard-Larsen
    DOI:10.1021/jo991409d
    日期:2000.2.1
    We have found that N, O-diBoc-protected beta-keto hydroxamic acids can be synthesized and cyclized to 5-substituted 3-isoxazolols without formation of any byproduct. We present a novel and versatile three-step procedure in which carboxylic acid derivatives are converted into acyl Meldrum's acids which, upon aminolysis with N, O-bis(tert-butoxycarbonyl)hydroxylamine, lead to the N, O-diBoc-protected
    3-异恶唑醇最通常由β-酮酯和羟胺合成。该环化通常产生主要副产物,相应的5-异恶唑酮。我们已经发现,可以合成N,O-diBoc保护的β-酮异羟肟酸并将其环化成5-取代的3-异恶唑醇,而不会形成任何副产物。我们提出了一种新颖且通用的三步程序,其中将羧酸衍生物转化为酰基麦德鲁姆酸,当与N,O-双(叔丁氧基羰基)羟胺进行氨解后,会生成N,O-diBoc保护的β-酮异羟肟酸。然后,将这些异羟肟酸类似物用盐酸处理后,环化成相应的5-取代的3-异恶唑醇。
  • 3-Oxoisoxazole-2(3H)-carboxamides and isoxazol-3-yl carbamates: Resistance-breaking acetylcholinesterase inhibitors targeting the malaria mosquito, Anopheles gambiae
    作者:Astha Verma、Dawn M. Wong、Rafique Islam、Fan Tong、Maryam Ghavami、James M. Mutunga、Carla Slebodnick、Jianyong Li、Elisabet Viayna、Polo C.-H. Lam、Maxim M. Totrov、Jeffrey R. Bloomquist、Paul R. Carlier
    DOI:10.1016/j.bmc.2015.01.026
    日期:2015.3
    To identify potential selective and resistance-breaking mosquitocides against the African malaria vector Anopheles gambiae, we investigated the acetylcholinesterase (AChE) inhibitory and mosquitocidal properties of isoxazol-3-yl dimethylcarbamates (15), and the corresponding 3-oxoisoxazole-2(3H)-dimethylcarboxamide isomers (14). In both series, compounds were found with excellent contact toxicity to wild-type susceptible (G3) strain and multiply resistant (Akron) strain mosquitoes that carry the G119S resistance mutation of AChE. Compounds possessing good to excellent toxicity to Akron strain mosquitoes inhibit the G119S mutant of An. gambiae AChE (AgAChE) with k(i) values at least 10-to 600-fold higher than that of propoxur, a compound that does not kill Akron mosquitoes at the highest concentration tested. On average, inactivation of WT AgAChE by dimethylcarboxamides 14 was 10-20 fold faster than that of the corresponding isoxazol-3-yl dimethylcarbamates 15. X-ray crystallography of dimethylcarboxamide 14d provided insight into that reactivity, a finding that may explain the inhibitory power of structurally-related inhibitors of hormone-sensitive lipase. Finally, human/An. gambiae AChE inhibition selectivities of these compounds were low, suggesting the need for additional structural modification. (C) 2015 Elsevier Ltd. All rights reserved.
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