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Sigma-Aldrich

N,N-Dimethylhexadecylamine

technical, ≥95% (GC)

Synonyme(s) :

1-(Dimethylamino)hexadecane, N,N-Dimethylpalmitylamine

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About This Item

Formule linéaire :
CH3(CH2)15N(CH3)2
Numéro CAS:
Poids moléculaire :
269.51
Numéro Beilstein :
1755921
Numéro CE :
Numéro MDL:
Code UNSPSC :
12352100
ID de substance PubChem :
Nomenclature NACRES :
NA.22

Qualité

technical

Pureté

≥95% (GC)
≥98.0% (NT)

Impuretés

≤0.3% water

Densité

0.801 g/mL at 20 °C (lit.)

Chaîne SMILES 

CCCCCCCCCCCCCCCCN(C)C

InChI

1S/C18H39N/c1-4-5-6-7-8-9-10-11-12-13-14-15-16-17-18-19(2)3/h4-18H2,1-3H3

Clé InChI

NHLUVTZJQOJKCC-UHFFFAOYSA-N

Catégories apparentées

Description générale

N,N-Dimethylhexadecylamine is a swelling agent useful for the enlargement of the size of mesopores of colloidal silica nanoparticles.

Application

N,N-Dimethylhexadecylamine may be employed in the following studies:
  • As pore size mediator for the synthesis of monodispersed mesoporous silica nanoparticles.
  • As swelling agent in the fabrication of colloidal mesoporous silica nanoparticles of a tunable mesopore size.
  • Preparation of 1,4-bis(N-hexadecyl-N,N-dimethylammonium)butane dibromide, Gemini surfactant.

Pictogrammes

CorrosionExclamation markEnvironment

Mention d'avertissement

Danger

Mentions de danger

Classification des risques

Acute Tox. 4 Oral - Aquatic Acute 1 - Aquatic Chronic 1 - Eye Dam. 1 - Skin Corr. 1B

Code de la classe de stockage

8A - Combustible corrosive hazardous materials

Classe de danger pour l'eau (WGK)

WGK 3

Point d'éclair (°F)

287.6 °F - closed cup

Point d'éclair (°C)

142 °C - closed cup

Équipement de protection individuelle

Faceshields, Gloves, Goggles, type ABEK (EN14387) respirator filter


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Amani L Lee et al.
ACS nano, 11(6), 5623-5632 (2017-05-16)
Oxygen homeostasis is important in the regulation of biological function. Disease progression can be monitored by measuring oxygen levels, thus producing information for the design of therapeutic treatments. Noninvasive measurements of tissue oxygenation require the development of tools with minimal
Ernesto Vázquez-Chimalhua et al.
Protoplasma, 256(3), 643-654 (2018-11-02)
Chemical communication underlies major adaptive traits in plants and shapes the root microbiome. An increasing number of diffusible and/or volatile organic compounds released by bacteria have been identified, which play phytostimulant or protective functions, including dimethyl-hexa-decylamine (DMHDA), a volatile biosynthesized
Ramiro Martínez-Cámara et al.
Folia microbiologica, 65(3), 523-532 (2019-12-14)
Bacteria have developed different intra- and inter-specific communication mechanisms that involve the production, release, and detection of signaling molecules, because these molecules serve as the autoinducers involved in "quorum sensing" systems. Other communication mechanisms employ volatile signaling molecules that regulate
Shanshan Dai et al.
Physical chemistry chemical physics : PCCP, 20(16), 11285-11295 (2018-04-11)
A series of CO2-responsive oil-in-water (O/W) emulsions were prepared by introducing hydrophobic tertiary amines (TAs) with varying alkane carbon numbers (ACNs) into the emulsion stabilized by sodium dodecyl benzene sulfonate (SDBS). TAs are converted to bicarbonate salts upon bubbling of
Jinlou Gu et al.
Journal of colloid and interface science, 407, 236-242 (2013-07-20)
Despite their great potentials as biomacromolecues delivery vehicles, there are few, if any, reports on mesoporous silica nanoparticles (MSNs) simultaneously integrated with the merits of large pore size, small particle diameters and well-ordered mesostructure. Here, we designed a facile strategy

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