- 英文名称N1,N3-Dibenzylpropane-1,3-Diamine
- 中文名称N1,N3-二苄基丙烷-1,3-二胺
- IUPAC名称N1,N3-dibenzylpropane-1,3-diamine
- 其它别名N,N'-二苯基-1,3-丙二胺; N,N'-Dibenzylpropane-1,3-Diamine
- CAS编号10239-34-6
- MFCD编号:MFCD06661418
- EINECS号:898-677-8
- 分子式:C17H22N2
- 分子量:254.38
- 产品CID: 53008
- 产品分类有机原料→分子砌块→芳环类化合物→苯类化合物
相似化合物
111-33-1 127346-48-9 17400-34-9欧盟法规
C&L通报上下游产品
N,N'-bisbenzylidene-1,3-diaminopropane 1,3-dibromo-propane benzylamine benzyl chloride2-benzo[1,3]dioxol-5-yl-1,3-dibenzyl-hexahydro-pyrimidine 1,3-dibenzyl-2-(4-chloro-phenyl)-hexahydro-pyrimidine acetic acid-[4-(1,3-dibenzyl-hexahydro-pyrimidin-2-yl)-anilide] 1,3-dibenzyl-2-phenyl-hexahydro-pyrimidine N,N'-(Propane-1,3-Diyl)Dibenzamide置于lithium Aluminium Tetrahydride体系中,用 四氢呋喃 用作溶剂,化学反应 36.0H,反应生成N,N'-二苯基-1,3-丙二胺
参考文献:手性次膦酰胺:硼烷不对称还原酮的新催化剂
标题:手性次膦酰胺:硼烷不对称还原酮的新催化剂
摘要:我们已经鉴定出一类新的催化剂,用于硼烷不对称还原前手性酮.有效催化剂结构的关键是n-p O结构单元,它可能是次膦酰胺,膦酰胺或相关结构的一部分.这种催化剂易于制备,通常为结晶固体,可以从还原反应中回收并再利用.催化剂基本上起路易斯碱的作用,通过给电子增加硼烷的反应性.在与硼烷反应时,将羟基引入催化剂中提供了相邻的路易斯酸位点,因此提供了能够不对称引发高达92%ee的优异催化剂.
Doi:10.1039/a709174E
专利信息
专利号:US-12172946-B2
优先权日:2019-01-07
标题:Compound containing diphenylmethane structure and use thereof
发明人:LIANG WEIZHOU; ZHENG QINGQUAN; TANG QI
权利人:GUANGZHOU TROJAN PHARMATEC LTD
摘要:A structure of the compound containing a diphenylmethane structure of the present invention is represented by General Formula (1). The compound containing a diphenylmethane structure of the present invention contains a hydroxyl group, an amino group, a substituted amino group, and an active group, and can be used as an amino acid or peptide C-terminal protection reagent. A peptide synthesis reaction using this protection carrier has a fast reaction speed and a high reagent utilization rate in a suitable solvent system; post-treatment is carried out by means of simple liquid-liquid extraction separation, i.e. effective purification can be carried out, and finally, a product with a high purity can be obtained; and during a synthesis process, the change in solubility is small and an operation process has a strong universality, and therefore, the present method can be developed into a universal production method.