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(2-Oxo-2-phenyl-ethyl)-trimethylsilanylmethyl-carbamic acid benzyl ester | 153489-17-9

中文名称
——
中文别名
——
英文名称
(2-Oxo-2-phenyl-ethyl)-trimethylsilanylmethyl-carbamic acid benzyl ester
英文别名
benzyl N-phenacyl-N-(trimethylsilylmethyl)carbamate
(2-Oxo-2-phenyl-ethyl)-trimethylsilanylmethyl-carbamic acid benzyl ester化学式
CAS
153489-17-9
化学式
C20H25NO3Si
mdl
——
分子量
355.509
InChiKey
SHVKBXBAMWCPMA-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):
    4.39
  • 重原子数:
    25
  • 可旋转键数:
    8
  • 环数:
    2.0
  • sp3杂化的碳原子比例:
    0.3
  • 拓扑面积:
    46.6
  • 氢给体数:
    0
  • 氢受体数:
    3

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

反应信息

  • 作为反应物:
    描述:
    (2-Oxo-2-phenyl-ethyl)-trimethylsilanylmethyl-carbamic acid benzyl ester硫酸 作用下, 以 四氢呋喃乙腈 为溶剂, 反应 1.0h, 生成 1-<(benzyloxy)carbonyl>-3-hydroxy-3-phenylazetidine
    参考文献:
    名称:
    Exploratory Studies of H-Atom Abstraction and Silyl-Transfer Photoreactions of Silylalkyl Ketones and (Silylalkyl)phthalimides
    摘要:
    Exploratory studies have been conducted to probe competitive H-atom abstraction and SET-promoted, silyl-transfer reactions of excited states of silylalkyl ketones and (silylalkyl)phthalimides. Photochemical investigations with the (silylalkyl)phthalimides have demonstrated that typical gamma-H atom abstraction reactions occur upon irradiation in less polar and less silophilic solvents. In contrast, irradiation of these substances in polar-protic-silophilic solvents results in product formation via pathways involving SET-induced desilylation. Photoreactions of silylamido-aryl ketones in either nonsilophilic or silophilic solvents take place almost exclusively by sequential SET silyl-transfer routes to produce azetidine products. Finally, the chemical selectivities of photochemical reactions of silylpropyl-aryl ketones appear to depend on medium polarity and silophilicity. Irradiation of these substrates in less polar-nonsilophilic solvents leads to almost exclusive formation of acetophenone and vinyltrimethylsilane in essentially equal yields by a reaction pathway initiated by gamma-H atom abstraction and 1,4-biradical fragmentation. However, irradiation of these substances in polar-silophilic solvents produces acetophenone and vinyltrimethylsilane in an ca. 1.7:1 ratio reflecting the fact that a silyl-transfer pathway competes with H-atom abstraction under these conditions.
    DOI:
    10.1021/jo9522623
  • 作为产物:
    描述:
    (2-Oxo-ethyl)-trimethylsilanylmethyl-carbamic acid benzyl ester 在 草酰氯二甲基亚砜 作用下, 以 四氢呋喃 为溶剂, 反应 3.0h, 生成 (2-Oxo-2-phenyl-ethyl)-trimethylsilanylmethyl-carbamic acid benzyl ester
    参考文献:
    名称:
    Exploratory Studies of H-Atom Abstraction and Silyl-Transfer Photoreactions of Silylalkyl Ketones and (Silylalkyl)phthalimides
    摘要:
    Exploratory studies have been conducted to probe competitive H-atom abstraction and SET-promoted, silyl-transfer reactions of excited states of silylalkyl ketones and (silylalkyl)phthalimides. Photochemical investigations with the (silylalkyl)phthalimides have demonstrated that typical gamma-H atom abstraction reactions occur upon irradiation in less polar and less silophilic solvents. In contrast, irradiation of these substances in polar-protic-silophilic solvents results in product formation via pathways involving SET-induced desilylation. Photoreactions of silylamido-aryl ketones in either nonsilophilic or silophilic solvents take place almost exclusively by sequential SET silyl-transfer routes to produce azetidine products. Finally, the chemical selectivities of photochemical reactions of silylpropyl-aryl ketones appear to depend on medium polarity and silophilicity. Irradiation of these substrates in less polar-nonsilophilic solvents leads to almost exclusive formation of acetophenone and vinyltrimethylsilane in essentially equal yields by a reaction pathway initiated by gamma-H atom abstraction and 1,4-biradical fragmentation. However, irradiation of these substances in polar-silophilic solvents produces acetophenone and vinyltrimethylsilane in an ca. 1.7:1 ratio reflecting the fact that a silyl-transfer pathway competes with H-atom abstraction under these conditions.
    DOI:
    10.1021/jo9522623
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文献信息

  • The operation of H-atom and TMS-group transfer processes in the photochemistry of silylamidoalkyl- and silylalkyl-ketones and -phthalimides
    作者:Yean Jang Lee、Chao Pin Lee、Yoon Tag Jeon、Patrick S. Mariano、Ung Chan Yoon、Dong Uk Kim、Jack C. Kim、Jong Gun Lee
    DOI:10.1016/s0040-4039(00)73797-x
    日期:1993.9
  • Exploratory Studies of H-Atom Abstraction and Silyl-Transfer Photoreactions of Silylalkyl Ketones and (Silylalkyl)phthalimides
    作者:Yean Jang Lee、Rong Ling、Patrick S. Mariano、Ung Chan Yoon、Dong Uk Kim、Sun Wha Oh
    DOI:10.1021/jo9522623
    日期:1996.1.1
    Exploratory studies have been conducted to probe competitive H-atom abstraction and SET-promoted, silyl-transfer reactions of excited states of silylalkyl ketones and (silylalkyl)phthalimides. Photochemical investigations with the (silylalkyl)phthalimides have demonstrated that typical gamma-H atom abstraction reactions occur upon irradiation in less polar and less silophilic solvents. In contrast, irradiation of these substances in polar-protic-silophilic solvents results in product formation via pathways involving SET-induced desilylation. Photoreactions of silylamido-aryl ketones in either nonsilophilic or silophilic solvents take place almost exclusively by sequential SET silyl-transfer routes to produce azetidine products. Finally, the chemical selectivities of photochemical reactions of silylpropyl-aryl ketones appear to depend on medium polarity and silophilicity. Irradiation of these substrates in less polar-nonsilophilic solvents leads to almost exclusive formation of acetophenone and vinyltrimethylsilane in essentially equal yields by a reaction pathway initiated by gamma-H atom abstraction and 1,4-biradical fragmentation. However, irradiation of these substances in polar-silophilic solvents produces acetophenone and vinyltrimethylsilane in an ca. 1.7:1 ratio reflecting the fact that a silyl-transfer pathway competes with H-atom abstraction under these conditions.
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