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Merck

O7805

油胺

technical grade, 70%

同義詞:

cis-1-氨基-9-十八烯, cis-1-氨基-9-十八烯

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關於此項目

線性公式:
CH3(CH2)7CH=CH(CH2)7CH2NH2
CAS 編號:
分子量::
267.49
UNSPSC Code:
12162002
NACRES:
NA.23
PubChem Substance ID:
EC Number:
204-015-5
Beilstein/REAXYS Number:
1723960
MDL number:

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InChI key

QGLWBTPVKHMVHM-KTKRTIGZSA-N

InChI

1S/C18H37N/c1-2-3-4-5-6-7-8-9-10-11-12-13-14-15-16-17-18-19/h9-10H,2-8,11-19H2,1H3/b10-9-

SMILES string

[H]\C(CCCCCCCC)=C(/[H])CCCCCCCCN

grade

technical grade

vapor pressure

8 mmHg ( 135 °C)

assay

70%

composition

primary amine, >98%

refractive index

n20/D 1.4596 (lit.)

bp

348-350 °C (lit.)

mp

18-26 °C (lit.)

density

0.813 g/mL at 25 °C (lit.)

Quality Level

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本產品
90983136931427728
grade

technical grade

grade

-

grade

technical grade

grade

-

assay

70%

assay

-

assay

85%

assay

65.0-88.0% (GC)

density

0.813 g/mL at 25 °C (lit.)

density

0.813 g/mL at 25 °C (lit.)

density

0.849 g/mL at 25 °C (lit.)

density

0.89 g/mL at 25 °C (lit.)

bp

348-350 °C (lit.)

bp

348-350 °C (lit.)

bp

207 °C/13 mmHg (lit.)

bp

194-195 °C/1.2 mmHg (lit.)

mp

18-26 °C (lit.)

mp

18-26 °C (lit.)

mp

0-5.0 °C (lit.)

mp

13-14 °C (lit.)

refractive index

n20/D 1.4596 (lit.)

refractive index

n20/D 1.4596 (lit.)

refractive index

n20/D 1.46 (lit.)

refractive index

n20/D 1.459 (lit.)

General description

油胺(OAm)是一种长链的初级烷基胺,其在高温下作为电子给体。OAm通过NH2 官能团对金属表现出亲和力。OAm的FTIR谱已有报道。在纳米粒子的合成中,油胺是一种强还原剂和稳定剂。

Application

应用于纳米颗粒的化学合成和加帽 如,Fe3O4, 聚(4-羟基-3-硝基苯乙烯)-接枝-聚合物((ε己内酯), 二氧化钛,[1] 介孔氧化硅。[2]

signalword

Danger

Hazard Classifications

Acute Tox. 4 Oral - Aquatic Acute 1 - Aquatic Chronic 1 - Asp. Tox. 1 - Eye Dam. 1 - Skin Corr. 1B - STOT RE 2 - STOT SE 3

target_organs

Respiratory system

存儲類別/等級

8A - Combustible corrosive hazardous materials

wgk

WGK 3

flash_point_f

309.2 °F - closed cup

flash_point_c

154 °C - closed cup

ppe

Eyeshields, Faceshields, Gloves, type P3 (EN 143) respirator cartridges


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Oleylamine in nanoparticle synthesis.
Mourdikoudis S and Liz-Marzan LM
Chemistry of Materials, 25(9), 1465-1476 (2013)
Fe3O4 @ poly (2-hydroxyethyl methacrylate)-graft-poly (ε-caprolactone) magnetic nanoparticles with branched brush polymeric shell.
Yuan W, et al.
Polymer, 51(12), 2540-2547 (2010)
Monty Liong et al.
ACS nano, 2(5), 889-896 (2009-02-12)
Drug delivery, magnetic resonance and fluorescence imaging, magnetic manipulation, and cell targeting are simultaneously possible using a multifunctional mesoporous silica nanoparticle. Superparamagnetic iron oxide nanocrystals were encapsulated inside mesostructured silica spheres that were labeled with fluorescent dye molecules and coated
Oleylamine as both reducing agent and stabilizer in a facile synthesis of magnetite nanoparticles.
Xu Z, et al.
Chemistry of Materials, 21(9), 1778-1780 (2009)
Diwei Ho et al.
Scientific reports, 7(1), 2866-2866 (2017-06-08)
Multimodal polymeric nanoparticles have many exciting diagnostic and therapeutic applications, yet their uptake and passage by the placenta, and applications in the treatment of pregnancy complications have not been thoroughly investigated. In this work, the maternal-fetal-placental biodistribution of anionic and

文章

溶剂热合成是一种制备材料的方法,例如金属、半导体、陶瓷和聚合物。

Magnetic nanoparticles have attracted tremendous attention due to their novel properties and their potential applications in magnetic recording, magnetic energy storage and biomedicine.

Solvothermal synthesis of nanoparticles: applications from nanocircuits and nano-optical circuits to nanomagnetics and biotech.

Prof. Randal Lee discusses iron oxide magnetic nanospheres and nanocubes design considerations for biosensing applications.

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