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DICYCLOHEXYLAMINE

Dicyclohexylamine is a secondary amine with the chemical formula 2.
Dicyclohexylamine is a colorless liquid, but commercial samples may appear yellow.
Dicyclohexylamine has a fishy odor typical of amines.
Dicyclohexylamine is slightly soluble in water.

CAS number: 101-83-7
EC Number: 202-980-7
IUPAC Name: N-Cyclohexylcyclohexanamine
Chemical Formula: C12H23N

Other names: N-Cyclohexylcyclohexanamine, 101-83-7, Cyclohexanamine, N-cyclohexyl-, Dicha, N,N-Dicyclohexylamine, Dicyklohexylamin, Dodecahydrodiphenylamine, N,N-Diclohexylamine, N-Cyclohexyl-cyclohexylamine, Dicyklohexylamin [Czech], NSC 3399, CCRIS 6228, HSDB 4018, EINECS 202-980-7, UN2565, BRN 0605923, 1A93RJW924, Aminodicyclohexane, AI3-15334, Bis(cyclohexyl)amine, DTXSID6025018, NSC-3399, N,N-DICYCLOHXYL-AMINE, DICYCLOHEXYLAMINE [MI], DTXCID005018, DICYCLOHEXYLAMINE [HSDB], EC 202-980-7, 4-12-00-00022 (Beilstein Handbook Reference), DICYKLOHEXYLAMIN (CZECH), Di-CHA, N,NDiclohexylamine, N,NDicyclohexylamine, N-CYCLOHEXANAMINE, NCyclohexylcyclohexanamine, NCyclohexylcyclohexylamine, PERHYDRODIPHENYLAMINE, Cyclohexanamine, Ncyclohexyl, N-CYCLOHEXYLCYCLOHEXANAMIDE, 202-980-7, inchi=1/c12h23n/c1-3-7-11(8-4-1)13-12-9-5-2-6-10-12/h11-13h,1-10h, DCHA, MLS002174250, CHEBI:34694, NCGC00090955-03, SMR001224510, DCH, CAS-101-83-7, UNII-1A93RJW924, dicydohexylamine, dicylohexylamine, dicylcohexylamine, di-cyclohexylamine, dicyclohexyl-amine, Dicyclohexyl amine, Sodium Cyclamate Imp. D (EP); N-Cyclohexylcyclohexanamine; Sodium Cyclamate Impurity D, bis-cyclohexylamine, MFCD00011658, Cy2NH, Cyclohexylcyclohexanamine, Dicyclohexylamine, 99%, SCHEMBL500, cid_7582, NCIOpen2_002862, cyclohexane, cyclohexylamino-, Oprea1_024913, SCHEMBL49353, MLS002152900, BIDD:ER0258, WLN: L6TJ AM-AL6TJ, CHEMBL1451838, SCHEMBL25400969, BDBM74256, NSC3399, HMS3741I15, STR04129, Tox21_111044, Tox21_201771, Tox21_303097, BBL002970, SBB059756, STK379549, Dicyclohexylamine, analytical standard, AKOS000119059, Tox21_111044_1, FD01427, UN 2565, NCGC00090955-01, NCGC00090955-02, NCGC00090955-04, NCGC00090955-05, NCGC00090955-06, NCGC00257081-01, NCGC00259320-01, Dicyclohexylamine Dodecahydro diphenylamine, Dicyclohexylamine [UN2565] [Corrosive], DS-002441, DS-002442, D0435, NS00011452, ST45255382, EN300-17273, A11830, SBI-0653907.0001, AG-617/02036022, AG-690/11351783, Q425368, BRD-K57091285-001-07-7, F2190-0312

Dicyclohexylamine is an organic base and useful precursor to other chemicals.
Dicyclohexylamine is widely used as an intermediate in organic synthesis.
Dicyclohexylamine can be used in the preparation of insecticides, catalysts, preservatives, vapor phase corrosion inhibitors and fuel antioxidant additives.

Dicyclohexylamine is prepared as a mixture by the catalytic hydrogenation of aniline with a ruthenium and/or palladium catalyst.
This method mainly produces a small amount of Dicyclohexylamine.
Better results were reported when the catalyst was applied to a niobic acid and tantalic acid support.
It is also obtained by reductive amination of Dicyclohexylamine with ammonia or cyclohexylamine.

Dicyclohexylamine is formed using a ruthenium catalyst.
Dicyclohexylamine can be prepared by pressurized hydrogenation of diphenylamine or by reaction in the presence of carbon catalyst under pressure of about 4 mm Hg.
Dicyclohexylamine has a fishy odor typical for amines.
Dicyclohexylamine is slightly soluble in water.

Dicyclohexylamine is an organic base as an amine.
Dicyclohexylamine is a useful precursor to other chemicals.
Dicyclohexylamine can be used in making paints, varnishes and detergents.

Dicyclohexylamine is colorless at room temperature with an earthy odor.
Dicyclohexylamine is a transparent oily liquid.
Dicyclohexylamine has a minty odor when it contains traces of phenol.
Dicyclohexylamine impurity is light yellow.
Dicyclohexylamine develops color due to the formation of impurities during the storage period.

Dicyclohexylamine is water white to gray-yellow in color.
Dicyclohexylamine has a strong, pungent odor.
Dicyclohexylamine is slightly soluble in water and miscible with most organic solvents.
Dicyclohexylamine is used industrially as a solvent, a raw material for organic synthesis, and a trigger for some oxidation reactions.

Dicyclohexylamine (DCHA) is an organic compound with the formula C12H23N.
Dicyclohexylamine is a clear, colorless, oily liquid with a faint amine odor.
Dicyclohexylamine is soluble in common organic solvents such as acetone, ethanol, and ether, but is insoluble in water.
Dicyclohexylamine has a boiling point of 256 °C, a flash point of 121 °C, and a density of 0.938 g/cm3 at 25 °C.
The molecular weight of dicyclohexylamine is 181.32 g/mol.

The main use of dicyclohexylamine is as the main intermediate in the production of nylon, caprolactam and adipic acid.
Another important use of dicyclohexylamine is as an industrial solvent in paint production.
Dicyclohexylamine can be used as an excellent solvent for organophosphorus insecticides and many similar pesticides.
Dicyclohexylamine is used as a solvent for paints and as a viscous solvent for piston-type aviation lubricants.

Also Dicyclohexylamine can be used as solvent for grease, wax and rubber.
Dicyclohexylamine is also used as a leveling agent for dyed and matte silks.
Dicyclohexylamine is also used as a degreaser for polishing metals and as a stain for wood.
Dicyclohexylamine is used as a high-boiling solvent in cosmetics such as nail polish.
The main function of dicyclohexylamine in industry is as organic synthesis raw material and solvent; For example, cyclohexanone can dissolve nitrocellulose,dye, etc.

Dicyclohexylamine is used to create ionic liquid matrices for bacterial analysis in ionization mass spectrometry.
There are two types of dicyclohexylamine: 98% DCHA, 99% DCHA and others.
They are also used in the manufacture of Dicyclohexylamine plastics, textiles, agricultural chemicals and others.

Global dicyclohexylamine is largely driven by the increasing demand for various dicyclohexylamines from various sectors such as textile chemicals and others.
Increasing demand for plastics, rapidly developing textile industries and increasing demand for dicyclohexylamine have triggered the growth of the market.
The growing application of dicyclohexylamine as catalyst for flexible polyurethane foams has supported the growth of the market.
Application in agricultural chemicals will help grow the market.
However, the side effects of the chemical and the availability of various substitutes may slow down the growth of the market.

Market Classification and Overview;
The global dicyclohexylamine market is largely segmented by product type and application.
Based on product types, the market is segmented into 98% DCHA, 99% DCHA, and others.
Based on application, the market is segmented into rubber and plastic, textile chemicals, agrochemicals and other sectors.

Regional Overview;
Regionally, the global dicyclohexylamine market is largely segmented into North America, Europe, Asia Pacific, and Latin America, Middle East and Africa (LAMEA).
Dicyclohexylamine dominates the global dicyclohexylamine market due to the presence of major manufacturers, increasing demand from the construction industry and market development.
Moreover, Dicyclohexylamine rapid industrialization and developing textile and plastic sectors also supported the growth of the market.

It is the second leader in the European dicyclohexylamine market.
The main factors driving the growth of the European dicyclohexylamine market are the increasing demand for plastics and high spending power of the public.
The North American market expects steady market growth in the near future.
The growth of the North American dicyclohexylamine market is largely driven by the increasing demand for textiles and plastics.
Additionally, well-developed infrastructure has accelerated the growth of the market.

Our report on the global Dicyclohexylamine (DCHA) market provides comprehensive information about the market and its dynamics.
Global demand for the dicyclohexylamine market is expected to be driven by increasing consumer demand for personal care products and other applications.
Moreover, increasing demand for pharmaceuticals and other quality chemicals is also expected to support the growth of the market in the coming years.

Dicyclohexylamine (DCHA) Application
Industrial grade: Dicyclohexylamine (DCHA) box is an organic synthetic intermediate.
Dicyclohexylamine is used as intermediate, rubber accelerator, catalysts, preservatives.
Dicyclohexylamine vapor phase inhibitor and fuel additives etc. It can be used in the preparation of paints containing

Agricultural grade: Dicyclohexylamine (DCHA), can be used as pesticide
Due to their high reactivity of dicyclohexylamine, amines are important intermediates used in the production of various industrial chemicals.
Dicyclohexylamine is used in medicine, biology, materials and the environment.
Dicyclohexylamine amines are effective in preventing corrosion due to the adsorption of the polar amino group onto the metal surface.
Dicyclohexylamine is used in the synthesis of agricultural chemicals, drugs, dyes, pesticides, detergents, lubricants, polymers and inhibitors.

Dicyclohexylamine is one of the effective organic corrosion inhibitors, that is, volatile corrosion inhibitors, dicyclohexylamine and its salts, as well as benzotriazole.
Dicyclohexylamine is also used in the production of rubber vulcanization accelerators, textiles, varnishes and metalworking fluids.
Dicyclohexylamine is produced primarily by the catalytic hydrogenation of aniline over metal catalysts, especially supported nickel catalysts.

Dicyclohexylamine (DCHA) is widely used as an intermediate in organic synthesis.
Dicyclohexylamine is used in dye intermediates, rubber accelerators, nitrocellulose dyes.
Dicyclohexylamine can be used in the textile field in the preparation of additives in insecticides, catalysts, preservatives.

Dicyclohexylamine is a soluble substance.
Dicyclohexylamine is water soluble.
The water solubility of dicyclohexylamine is 1 g/L (20 ºC).
Dicyclohexylamine is used in organic synthesis.
Also Dicyclohexylamine; It is also used as a pesticide, absorbent acid gas inhibitor and steel.
Used as natural products, synthetic organic extractant, acid gas absorption.

Dicyclohexylamine should be stored in tightly closed containers in a cool, well-ventilated area.
Ignition sources such as open flames are prohibited where dicyclohexylamine is used or stored in a manner that may pose a fire or explosion hazard.
Dicyclohexylamine is a flammable substance.
However, Dicyclohexylamine requires a specific trigger to ignite.

USAGE AREAS OF DICHLOHEXYLAMIN
Pharmaceutical Intermediates
Dicyclohexylamine is used as raw material in the synthesis of various pharmaceuticals such as local anesthetics, antihistamines, antibiotics and anti-tumor agents.
For example, it is an important intermediate for the production of lidocaine, an important local anesthetic used in dentistry and surgery.
Dicyclohexylamine is also used as a catalyst or solvent in organic reactions leading to the formation of active pharmaceutical ingredients (APIs).

Pesticides
Dicyclohexylamine is the basic building block of many agricultural chemicals such as herbicides, fungicides, and insecticides.
Dicyclohexylamine is the main substance for the synthesis of cyclohexanecarboxylic acid, which is an important intermediate in the production of various herbicides such as mecoprop and 2,4-D.
Dicyclohexylamine is also used as a solvent or stabilizer in the formulation of agricultural chemicals.

Rubber Chemicals
Dicyclohexylamine is an important component in the production of rubber chemicals such as accelerators, vulcanizing agents and antioxidants.
Dicyclohexylamine is used in the vulcanization process of rubber.
Dicyclohexylamine is a catalyst that needs to be cross-linked to increase the strength, elasticity and durability of polymer chains.
Dicyclohexylamine acts as a co-catalyst.
Dicyclohexylamine is also used as a solvent or dispersant in the formulation of rubber compounds.

Other Applications
Dicyclohexylamine has other uses in various fields:
Corrosion inhibitors: Dicyclohexylamine is used as a component of corrosion inhibitors for metal surfaces such as steel, aluminum and copper.
It forms a protective film on the surface that prevents corrosion caused by acidic or alkaline environments.

Fuel additives: Dicyclohexylamine is added to gasoline or diesel fuels as a scavenger of acidic compounds such as sulfur and nitrogen oxides.
Dicyclohexylamine helps reduce pollutant emissions and increase the fuel efficiency of engines.

Polymerization: Dicyclohexylamine is used as a chain transfer agent or modifier in the polymerization of vinyl monomers such as methyl methacrylate.
Dicyclohexylamine helps control the molecular weight and structure of the resulting polymers.

Global "Dicyclohexylamine (DCHA) Market" (2023-2030) research report;
Global drivers including dicyclohexylamine advancement trends, competitive landscape analysis, and expansion are examined.
This comprehensive Dicyclohexylamine (DCHA) market research report is the result of extensive primary and secondary research efforts.
It covers a comprehensive competitive analysis categorized by application, type, and regional trends.
It provides a detailed analysis of both the current status and future objectives of the dicyclohexylamine market.

It presents a series of N-protected amino acids as dicyclohexylamine salts.
Production of such salts is preferred if the free amino acid is not present in crystal form or if the free acid is unstable.
Additionally, in some cases, Dicyclohexylamine salts of the derivatives can be purified by a simple process.
An example represents the separation of racemates using their diastereomeric salts.
However, before starting peptide synthesis, amino acids must first be purified from Dicyclohexylamine salts.

With hydrochloric acid, dicyclohexylamine forms the slightly soluble dicyclohexylammonium chloride.
Therefore, the release of the amino acid from the DCHA salt must be carried out using phosphoric acid as mentioned above.
Alternatively sulfuric acid 1 or KHSO423 can be applied.

For the same reason, sodium chloride solution (saline) can be added to the wash buffer only after Dicyclohexylamine has been completely removed.
Dicyclohexylamine is an organic compound belonging to the aliphatic amine family.

Dicyclohexylamine has a melting point of -17.7°C and a boiling point of 134.5°C.
Dicyclohexylamine is a colorless liquid at room temperature with a strong amine odor.
Dicyclohexylamine can be produced in two ways; by hydrogenation of aniline with nickel or cobalt as a catalyst or by alkylation of cyclohexanol with ammonia.

Dicyclohexylamine can be derived from its use as a rust inhibitor in the printing ink industry.
It is also widely used as boiler water purifier, rubber chemicals, surfactants, paint raw materials and cleaning aid.
Dicyclohexylamine is also a sulfenamide vulcanization accelerator.
Dicyclohexylamine; It is used as a mucolytic, analgesic, bronchodilator and other pharmaceutical agents, and as an intermediate in various synthetic organic chemicals.
Additionally, the artificial sweetener cyclo is obtained by reacting a mixture of cyclohexylamine and sulfamic acid with sodium hydroxide.

Dicyclohexylamine is widely used as an intermediate in organic synthesis.
Dicyclohexylamine is a regulator.
Dicyclohexylamine is often used as an accelerator, which highlights its catalyst properties.
Since dicyclohexylamine is common as an intermediate, it is also used to match paint tones.
Dicyclohexylamine rubber shows itself in certain reactions with its accelerator feature.

Dicyclohexylamine is used to destroy insects.
It is abundant in pesticides.
Dicyclohexylamine antioxidant additives etc. can be used in production.
It is also used as an extractant.
Fatty acid salts and dicyclohexylamine sulfates have decontamination properties with soap and are used in printing, dyeing and textile industries.

Dicyclohexylamine presents an explosion hazard.
Even if it is not shown as an explosive substance, it is dangerous to have any substance used as an inflammatory.
Dicyclohexylamine should be stored in tight containers without air to prevent oxidation.

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