1-Phenoxy-2-propanamine(CAS番号:35205-54-0)

基本情報

1-Phenoxy-2-propanamine

CAS番号

35205-54-0

分子式

C9H13NO

分子量

151.21 g/mol

Quick Actions

基本的な物理特性

沸点

240.5°Cat760mmHg

密度

1.004

引火点

99.5°C

屈折率

1.519

SMILES

CC(COC1=CC=CC=C1)N

InChI

InChI=1S/C9H13NO/c1-8(10)7-11-9-5-3-2-4-6-9/h2-6,8H,7,10H2,1H3

InChIKey

IKYFHRVPKIFGMH-UHFFFAOYSA-N

LogP

1.4126

トポロジカル極性表面積

35.25 Ų

水素結合ドナー/アクセプター

2 / 2

複雑度

99.7

分類と用途

安全情報

安全情報を表示

危険物区分

IRRITANT

同義語と参考文献

英語

  • NSC137777
  • (1-methyl-2-phenoxyethyl)amine
  • LS-09259
  • Ethylamine, methyl-2-phenoxy-
  • SB76412
  • 2-Propanamine, 1-phenoxy-
  • 35205-54-0
  • CS-0433311
  • 4-06-00-00669 (Beilstein Handbook Reference)
  • ETHYLAMINE, 1-METHYL-2-PHENOXY-
  • 1-methyl-2-phenoxyethyl amine
  • C 1926
  • Phenoxyisopropylamine
  • EN300-58378
  • BB 0255191
  • MFCD00008083
  • 1-Methyl-2-phenoxy-ethylamine
  • N12753
  • .alpha.-Methyl-2-phenoxyethanamine
  • NSC-137777
  • 1-Phenoxy-2-propylamine
  • 2-Phenoxy-1-methylethylamine
  • SCHEMBL366154
  • CHEMBL162135
  • AB01007136-01
  • 1-Phenoxypropane-2-amine
  • LS-68252
  • 1-Phenoxy-2-propanamine
  • NSC 137777
  • AKOS016042140
  • 1-phenoxypropan-2-amine
  • FT-0678798
  • BRN 2045304
  • 1-Methyl-2-phenoxyethylamine
  • 2-Amino-1-phenoxypropane
  • O(CC(C)N)c1ccccc1
  • DTXSID301313534
  • AKOS000302300
  • 2-Phenoxyisopropylamine
  • EINECS 252-434-7
  • 1-Phenoxypropan-2-amine
  • (2R)-1-phenoxypropan-2-amine
  • 1-METHYL-2-PHENOXY-ETHYLAMINE
  • Ethylamine, 1-methyl-2-phenoxy-
  • α-Methyl-2-phenoxyethanamine

MDL_Number

MFCD00008083

CAS番号

35205-54-0

サプライヤー情報

サプライヤー名 会員レベル 認証状況 主要カテゴリー 最小注文数量 アクション
中国中国 - Hubei Chenghai Chemical Co., Ltd.
中国中国 - Hubei Dahao Chemical Co., Ltd.
中国中国 - Hubei Tuopan Chemical Co., Ltd.
中国中国 - Shanghai Hansi Chemical Co., Ltd.
中国中国 - Shanghai Yuyeh Biotechnology Co., Ltd.
中国中国 - JinEn (Guangzhou) New Materials Co., Ltd.
ドイツドイツ - Heimbach Filtration GmbH
中国中国 - Dongguan Hui Xin Innovative Material Technology Co., Ltd.

関連論文

Pulsed laser rusted stainless steel: a robust electrode material applied for energy storage and generation applications

Namachivayam Karthik, Tian Tian, Thomas Nesakumar Jebakumar Immanuel Edison, Raji Atchudan, Yong Rok Lee, Seongbeom Kim, Dangsheng Xiong

2019-12-03 Paper

DOI: 10.1039/C9SE00676A

Electrospun hydrogels for dynamic culture systems: advantages, progress, and opportunities

M. Gregory Grewal

2021-01-25 Review Article

DOI: 10.1039/D0BM01588A

Coexisting order and disorder within a common 40-residue amyloid-β fibril structure in Alzheimer's disease brain tissue

Ujjayini Ghosh, Wai-Ming Yau, Robert Tycko

2018-04-24 Communication

DOI: 10.1039/C8CC01967C

Catalogue of self-targeting nano-medical inventions to accelerate clinical trials

Samar A. Alsudir

2021-04-15 Review Article

DOI: 10.1039/D1BM00235J

Biomimetic hydrogels designed for cartilage tissue engineering

Alexander Stokes, Piergiorgio Gentile, Ana M. Ferreira

2021-02-12 Review Article

DOI: 10.1039/D0BM01852J

A robust multifunctional ligand-controlled palladium-catalyzed carbonylation reaction in water

Kan Zhang, Ming-Ming Yang, Shan Xu, Hua-Ming Sun, Jin-Lei Zhang, Zi-Wei Gao, Wei-Qiang Zhang

2018-04-24 Communication

DOI: 10.1039/C8CC00324F

Ether-functionalization of monoethanolamine (MEA) for reversible CO2 capture under solvent-free conditions with high-capacity and low-viscosity

An-Hua Liu, Jie-Jie Li, Bai-Hao Ren, Xin-Ru Sha, He Jiang, Xiao-Bing Lu

2019-12-04 Paper

DOI: 10.1039/C9SE00756C

Engineering nanoporous organic frameworks to stabilize naked Au clusters: a charge modulation approach

Chengcheng Tian, Xiang Zhu, Huize Wang, Hai Wang, Carter W. Abney, Ning Zhang

2018-04-25 Communication

DOI: 10.1039/C8CC02966K

Contents list

2021-06-04 Front/Back Matter

DOI: 10.1039/D1BM90055B