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2-acetylphenyl 3-methylbenzoate | 109899-90-3

中文名称
——
中文别名
——
英文名称
2-acetylphenyl 3-methylbenzoate
英文别名
3-methyl-benzoic acid-(2-acetyl-phenyl ester);3-Methyl-benzoesaeure-(2-acetyl-phenylester);(2-Acetylphenyl) 3-methylbenzoate
2-acetylphenyl 3-methylbenzoate化学式
CAS
109899-90-3
化学式
C16H14O3
mdl
——
分子量
254.285
InChiKey
SWHGILKFAZYPLT-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

  • 熔点:
    63 °C(Solv: ethanol (64-17-5))
  • 沸点:
    439.1±38.0 °C(Predicted)
  • 密度:
    1.152±0.06 g/cm3(Predicted)

计算性质

  • 辛醇/水分配系数(LogP):
    2.9
  • 重原子数:
    19
  • 可旋转键数:
    4
  • 环数:
    2.0
  • sp3杂化的碳原子比例:
    0.12
  • 拓扑面积:
    43.4
  • 氢给体数:
    0
  • 氢受体数:
    3

反应信息

  • 作为反应物:
    描述:
    2-acetylphenyl 3-methylbenzoate氢氧化钾碘苯二乙酸硫酸 、 sodium hydride 、 溶剂黄146 作用下, 以 吡啶甲醇二氯甲烷 为溶剂, 反应 2.5h, 生成 3-(methoxymethyl)oxy-3'-methylflavone
    参考文献:
    名称:
    Antimicrobial effects of novel siderophores linked to β-lactam antibiotics
    摘要:
    As a strategy to increase the penetration of antibiotic drugs through the outer membrane of Gram-negative pathogens, facilitated transport through siderophore receptors has been frequently exploited. Hydroxamic acids, catechols, or very close isosteres of catechols, which are mimics of naturally occurring siderophores, have been used successfully as covalently linked escorting moieties, but a much wider diversity of iron binding motifs exists. This observation, coupled to the relative lack of specificity of siderophore receptors, prompted us to initiate a program to identify novel, noncatechol siderophoric structures. We screened over 300 compounds for their ability to (1) support growth in low iron medium of a Pseudomonas aeruginosa siderophore biosynthesis deletion mutant, or (2) compete with a bactericidal siderophore-antibiotic conjugate for siderophore receptor access. From these assays we identified a set of small molecules that fulfilled one or both of these criteria. We then synthesized these compounds with functional groups suitable for attachment to both monobactam and cephalosporin core structures. Siderophore-P-lactam conjugates then were tested against a panel of Escherichia coli, Pseudomonas aeruginosa, and Staphylococcus aureus strains. Although several of the resultant chimeric compounds had antimicrobial activity approaching that of ceftazidime, and most compounds demonstrated very potent activity against their cellular targets, only a single compound was obtained that had enhanced, siderophore-mediated antibacterial activity. Results with tonB mutants frequently showed increased rather than decreased susceptibilities, suggesting that multiple factors influenced the intracellular concentration of the drugs. (C) 2000 Elsevier Science Ltd. All rights reserved.
    DOI:
    10.1016/s0968-0896(99)00261-8
  • 作为产物:
    描述:
    乙酸苯酯吡啶三氯化铝 作用下, 以 二硫化碳 为溶剂, 生成 2-acetylphenyl 3-methylbenzoate
    参考文献:
    名称:
    Bowden, Keith; Chehel-Amiran, Mohsen, Journal of the Chemical Society. Perkin transactions II, 1986, p. 2039 - 2044
    摘要:
    DOI:
点击查看最新优质反应信息

文献信息

  • Novel Bifunctionalization of Activated Methylene: Base‐Promoted Trifluoromethylthiolation of β‐Diketones with Trifluoromethanesulfinyl Chloride
    作者:Dong‐Wei Sun、Min Jiang、Jin‐Tao Liu
    DOI:10.1002/chem.201901781
    日期:2019.8.14
    β-diketones or β-ketoesters with trifluoromethanesulfinyl chloride. A series of α-trifluoromethylthiolated α-chloro-β-diketones and α-chloro-β-ketoesters were obtained in moderate to good yields under mild conditions. When β-diketones containing a phenyl group with a hydroxyl or amino substituent at the ortho position were used as substrates, intramolecular trifluoromethylthiolation/cyclization reaction took
    通过用三氟甲亚磺酰氯将β-二酮或β-酮酸酯进行碱促进的三氟甲基硫醇化,成功实现了活化亚甲基的新型双功能化。在温和条件下,以中等至良好的收率获得了一系列α-三氟甲基硫醇化的α-氯代-β-二酮和α-氯代-β-酮酸酯。当使用在邻位上具有羟基或氨基取代基的苯基的β-二酮作为底物时,发生分子内三氟甲基硫醇化/环化反应,得到相应的环状产物。此外,该方案可以扩展到全氟烷基亚磺酸钠/ POCl3系统的全氟烷基硫醇化。根据实验结果,提出了合理的机制。
  • 10.1021/acs.orglett.4c01808
    作者:Wu, Xiaoxue、Li, Meina、Guo, Qianling、Zi, Guofu、Hou, Guohua
    DOI:10.1021/acs.orglett.4c01808
    日期:——
    Rh-catalyzed asymmetric hydrogenation of 2-substituted 4H-thiochromenes and 4H-chromenes was successfully developed. This method provided highly efficient access to a series of chiral 2-substituted thiochromanes and chromanes in high yields with excellent enantioselectivities (up to 99% yield, 86–99% ee). The obtained chiral 2-substituted thiochromane products were also successfully transformed to
    成功开发了Rh催化的2-取代4H-色烯和4H-色烯的不对称氢化反应。该方法以高产率高效获得一系列手性 2-取代硫代苯并二氢吡喃和苯并二氢吡喃,并具有优异的对映选择性(产率高达 99%,ee 为 86–99%)。所得手性2-取代苯并噻喃产物也成功转化为相应的手性α-取代亚砜和砜,具有优异的对映选择性。此外,这种高度对映选择性的氢化过程可以成功应用于手性药物BW683C的简洁实用的合成。
  • Cu(II)-catalyzed oxidative esterification of 2-carbonyl substituted phenols from the alcohol oxidation level
    作者:Satyasheel Sharma、Jihye Park、Mirim Kim、Jong Hwan Kwak、Young Hoon Jung、In Su Kim
    DOI:10.1016/j.tet.2013.08.079
    日期:2013.11
    A copper-catalyzed oxidative esterification of 2-carbonyl substituted phenols from the alcohol oxidation level is described. This protocol represents direct access to a range of 2-carbonylated aryl benzoate derivatives, which are important building blocks in the synthesis of natural and pharmacological compounds. (C) 2013 Elsevier Ltd. All rights reserved.
  • Cramer; Elschnig, Chemische Berichte, 1956, vol. 89, p. 1,10
    作者:Cramer、Elschnig
    DOI:——
    日期:——
  • Bowden, Keith; Chehel-Amiran, Mohsen, Journal of the Chemical Society. Perkin transactions II, 1986, p. 2039 - 2044
    作者:Bowden, Keith、Chehel-Amiran, Mohsen
    DOI:——
    日期:——
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同类化合物

棓酰棓酸三油酸酯 非那米柳 雷尼替丁 降钙素(humanreduced),8-L-缬氨酸-(9CI) 间苯甲酰氧基苯乙酮 间苯二甲酸二苯酯 间甲苯基苯甲酸酯 间双没食子酸 醋氨沙洛 邻苯二甲酸苄酯2-乙己基酯 邻苯二甲酸二苯酯 邻甲苯基苯甲酸酯 邻氨基苯甲酸(4-硝基苯基)酯 邻亚苯基二苯甲酸酯 贝诺酯 袋衣酸 萘-1,5-二磺酸-4-[2-(二甲氨基)乙氧基]-2-甲基-5-(丙烷-2-基)苯基2-氨基苯酸酯(1:1) 茶痂衣酸 苯甲醯柳酸甲酯 苯甲酸苯酯 苯甲酸五氟苯酯 苯甲酸丁香酚酯 苯甲酸4-[[(4-甲氧基苯基)亚甲基]氨基]苯基酯 苯甲酸4-(乙酰氨基)-2-[[2-[4-(乙酰氨基)苯甲酰基]亚肼基]甲基]苯基酯 苯甲酸2-(2-苯并恶唑基)苯酯 苯甲酸-4-甲基苯酯 苯甲酸-(2,4-二溴-3-甲基-苯基酯) 苯甲酸-(2,4-二叔丁基苯基酯) 苯甲酸,4-羟基-,4-(己氧基)苯基酯 苯甲酸,4-羟基-,4-(十二烷氧基)苯基酯 苯甲酸,4-甲氧基-,2-甲酰基苯基酯 苯甲酸,4-甲基-,4-甲基苯基酯 苯甲酸,4-戊基-,4-(壬氧基)苯基酯 苯甲酸,4-丁氧基-,1,4-亚苯基酯 苯甲酸,4-[1-(己氧基)乙基]-,4-(辛氧基)苯基酯 苯甲酸,4-(苯基甲氧基)-,4-(癸氧基)苯基酯 苯甲酸,4-(癸氧基)-,4-[氰基[(1-羰基戊基)氧代]甲基]苯基酯,(R)- 苯甲酸,4-(癸氧基)-,4-[(4-甲基己基)氧代]苯基酯 苯甲酸,4-(癸氧基)-,4-(2-甲基丁基)苯基酯 苯甲酸,4-(己氧基)-,1,4-亚苯基酯 苯甲酸,3-[[4-(1,1-二甲基乙基)苯甲酰]氧代]-4-甲基-,甲基酯 苯甲酸,3,4-二(癸氧基)-,4-[(苯基甲氧基)羰基]苯基酯 苯甲酸,2-庚基-4-[(2-羟基-4-甲氧基-6-戊基苯甲酰)氧代]-6-甲氧基-,苯基甲基酯 苯甲酸,2,4,6-三甲基-,2,4,6-三甲苯基酯 苯甲酸,2,3-二甲基-,2-硝基苯基酯 苯甲酸,(2-乙氧基-4-甲酰)苯酯 苯甲酰氧基苯甲酸苄酯 苯扎贝特杂质1 苯并呋喃-2-羧酸苯胺 苯并[b][1,5]苯并二氧杂卓-6-酮