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trinitrotoluene (TNT) synthesis

this allows you even to separate isomers for other synthesis (toluidines, ..

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trinitrotoluene - Free definitions by Babylon

Toxic

TNT Reactions
Possible reactions:
reagent for chemical synthesis
explosion or detonation
Detonation of TNT
Exothermic reaction (obviously).
TNT decomposes into nitrogen gas, water vapor, carbon monoxide and solid carbon (soot).
1gram = 1 litre of gas
TNT as an effective weapon
Melts at 81 degrees Celsius
Easy to handle safely
Detonation can be easily controlled.

Because TNT has a fairly high activation energy, it can be safely poured into shell cases as liquid, and is so insensitive that in 1910, it was excluded from the UK's Explosives Act 1875 and was not considered an explosive for the purposes of manufacture and storage.
More History
Even More History....
In 1902 the German armed forces adopted it as a filling for artillery shells.

Answer to Trinitrotoluene (TNT) is synthesized from toluene and nitric acid: C7H8 + 3 HNO3

AB - A unique approach to alter the properties of existing energetic materials through cocrystallization is presented. The structure and properties of 17 new cocrystals of the benchmark energetic material 2,4,6-trinitrotoluene (TNT) are elucidated. The donor-acceptor π-π interaction represents a reliable supramolecular synthon for the formation of cocrystals with this aromatic energetic material. When present, amine-nitro interactions direct secondary packing in these crystals. A detailed study of the cocrystals formed reveals an alteration of key properties including density, packing coefficient, melting point, and decomposition temperature. Cocrystallization provides the opportunity to tune properties of existing energetics to create superior materials and provides a complementary alternative to traditional methods that focus primarily on the synthesis of new compounds and/or the discovery of polymorphs with the most attractive properties.

Synthesis of polycyclic indole derivatives from 2,4,6-trinitrotoluene

trinitrotoluene - Free definition results from over 1700 online dictionaries

A unique approach to alter the properties of existing energetic materials through cocrystallization is presented. The structure and properties of 17 new cocrystals of the benchmark energetic material 2,4,6-trinitrotoluene (TNT) are elucidated. The donor-acceptor π-π interaction represents a reliable supramolecular synthon for the formation of cocrystals with this aromatic energetic material. When present, amine-nitro interactions direct secondary packing in these crystals. A detailed study of the cocrystals formed reveals an alteration of key properties including density, packing coefficient, melting point, and decomposition temperature. Cocrystallization provides the opportunity to tune properties of existing energetics to create superior materials and provides a complementary alternative to traditional methods that focus primarily on the synthesis of new compounds and/or the discovery of polymorphs with the most attractive properties.

N2 - A unique approach to alter the properties of existing energetic materials through cocrystallization is presented. The structure and properties of 17 new cocrystals of the benchmark energetic material 2,4,6-trinitrotoluene (TNT) are elucidated. The donor-acceptor π-π interaction represents a reliable supramolecular synthon for the formation of cocrystals with this aromatic energetic material. When present, amine-nitro interactions direct secondary packing in these crystals. A detailed study of the cocrystals formed reveals an alteration of key properties including density, packing coefficient, melting point, and decomposition temperature. Cocrystallization provides the opportunity to tune properties of existing energetics to create superior materials and provides a complementary alternative to traditional methods that focus primarily on the synthesis of new compounds and/or the discovery of polymorphs with the most attractive properties.

Preparation of 2,4,6-TRINITROTOLUENE

A computational study investigating the suitability of zigzag graphene nanoribbons to serve as selective chemical detectors for trinitrotoluene is presented. Using lithium adatoms as surface anchoring sites, we find that chemisorption of different chemical precursors serving in the trinitrotoluene synthesis process induces unique and distinguishable fingerprints on the electronic structure of the underlying nanoribbon. Furthermore, mixed adsorption of trinitrotoluene and its various chemical precursors may allow the determination of the specific synthesis route used to produce this commonly used explosive material. The understanding of the contaminant adsorption process gained in this study suggests that lithium-decorated graphene nanoribbons may serve as selective chemical detectors.

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  • Recent Examples of trinitrotoluene ..

    Trinitrotoluene or TNT (chemical formula C 7 H 5 N 3 O 6) is a chemical explosive that has often been used in warfare

  • 2,4,6-Trinitrotoluene | C7H5N3O6 | ChemSpider

    Title : Chemical Reduction of 2.3,6-Trinitrotoluene (TNT) Initial Products

  • Consiga Chemical synthesis aqui

    compound

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