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Home Structure (nitrosonitroso)amine

Structure of (nitrosonitroso)amine (N2O2)

Identification of (nitrosonitroso)amine Chemical Compound

2D chemical structure image of (nitrosonitroso)amine
Chemical Formula N2O2
Molecular Weight 60.0122 g/mol
IUPAC Name (nitrosonitroso)amine
InChI InChI=1S/N2O2/c3-1-2-4

Chemical Structure Description

A chemical structure of a molecule includes the arrangement of atoms and the chemical bonds that hold the atoms together. The (nitrosonitroso)amine molecule contains a total of 3 bond(s) There are 3 non-H bond(s), 2 multiple bond(s), 1 rotatable bond(s) and 2 double bond(s).
Images of the chemical structure of (nitrosonitroso)amine are given below:

2D chemical structure image of (nitrosonitroso)amine
2-dimensional (2D) chemical structure image of (nitrosonitroso)amine
3D chemical structure image of (nitrosonitroso)amine
3-dimensional (3D) chemical structure image of (nitrosonitroso)amine

The 2D chemical structure image of (nitrosonitroso)amine is also called skeletal formula, which is the standard notation for organic molecules. The carbon atoms in the chemical structure of (nitrosonitroso)amine are implied to be located at the corner(s) and hydrogen atoms attached to carbon atoms are not indicated – each carbon atom is considered to be associated with enough hydrogen atoms to provide the carbon atom with four bonds.

The 3D chemical structure image of (nitrosonitroso)amine is based on the ball-and-stick model which displays both the three-dimensional position of the atoms and the bonds between them. The radius of the spheres is therefore smaller than the rod lengths in order to provide a clearer view of the atoms and bonds throughout the chemical structure model of (nitrosonitroso)amine.

An Interactive 3-dimensional (3D) Visualization of (nitrosonitroso)amine

For a better understanding of the chemical structure, an interactive 3D visualization of (nitrosonitroso)amine is provided here.

The (nitrosonitroso)amine molecule shown in the visualization screen can be rotated interactively by keep clicking and moving the mouse button. Mouse wheel zoom is available as well – the size of the (nitrosonitroso)amine molecule can be increased or decreased by scrolling the mouse wheel.

The information of the atoms, bonds, connectivity and coordinates included in the chemical structure of (nitrosonitroso)amine can easily be identified by this visualization. By right-clicking the visualization screen, various other options are available including the visualization of van der Waals surface and exporting to a image file.

More Properties of (nitrosonitroso)amine

For physicochemical, thermodynamic, transport, spectra, and other property data & information, the followings are available from “Mol-Instincts”, a chemical database based on quantum mechanics:

Additional Information for Identifying (nitrosonitroso)amine Molecule

  • Other names (synonyms) or registry numbers of (nitrosonitroso)amine

    The (nitrosonitroso)amine compound may be called differently depending on the various different situations of industrial applications. Below are the list of the other names (synonyms) of (nitrosonitroso)amine including the various registry numbers, if available:

    • bis(oxidonitrogen)(N--N)
    • N-oxonitrous amide
    • dioxohydrazine
    • ONNO

Additional Outstanding Products

(nitrosonitroso)amine Identification Summary Frequently Asked Questions (FAQs)

What’s the chemical formula of (nitrosonitroso)amine?
How many atoms and what are the elements included the (nitrosonitroso)amine molecule?
4 atom(s) - 2 Nitrogen atom(s) and 2 Oxygen atom(s)
How many chemical bonds and what kind of bonds are included the (nitrosonitroso)amine structure?
3 bond(s) - 3 non-H bond(s), 2 multiple bond(s), 1 rotatable bond(s) and 2 double bond(s)
What’s the (nitrosonitroso)amine’s molecular weight?
60.0122 g/mol
What’s the SMILES code of (nitrosonitroso)amine?
What’s the InChI string of (nitrosonitroso)amine?
What’s the InChIKey code of (nitrosonitroso)amine?

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Source: Mol-Instincts Chemical Database, Predicted on Quantum.
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