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Nitrogen difluoride

Nitrogen difluoride, also known as difluoroamino, is a reactive radical molecule with formula . This small molecule is in equilibrium with its dimer tetrafluorohydrazine.

As the temperature increases the proportion of increases.

The molecule is unusual in that it has an odd number of electrons, yet is stable enough to study experimentally.

Properties

The energy needed to break the N–N bond in is , with an entropy change of 38.6&nbsp;eu. For comparison, the dissociation energy of the N–N bond is in , in , and in . The enthalpy of formation of (Δ<sub>f</sub>H) is .

At room temperature is mostly associated with only 0.7% in the form of at pressure. When the temperature rises to 225&nbsp;°C, it mostly dissociates with 99% in the form of .

In , the N–F bond length is 1.3494&nbsp;àand the angle subtended at F–N–F is 103.33°.

In the infrared spectrum the N–F bond in has a symmetrical stretching frequency of 1075&nbsp;cm<sup>−1</sup>. This compares to 1115&nbsp;cm<sup>−1</sup> in NF, 1021&nbsp;cm<sup>−1</sup> in and 998&nbsp;cm<sup>−1</sup> in .

The microwave spectrum shows numerous lines due to spin transitions, with or without nuclear spin transitions. The lines form set of two triplets for antisymmetric singlet, or two triplets of triplets for symmetric triplet. Lines appear around 14–15, 24, 25, 26, 27, 28–29, 33, 60, 61, 62, and 65&nbsp;GHz. The rotational constants for the molecule are A&nbsp;= , B&nbsp;= , and C&nbsp;= . The inertial defect Δ&nbsp;= 0.1204&nbsp;m<sub>u</sub>·Å<sup>2</sup>. The centrifugal distortion constants are τ<sub>aaaa</sub> = −7.75, τ<sub>bbbb</sub> = −0.081, τ<sub>aabb</sub> = 0.30, and τ<sub>abab</sub> = −0.13.

The dipole moment is 0.13&nbsp;D ().

The ground electronic state of the molecule is <sup>2</sup>B<sub>1</sub>.

The gas is often contaminated with NO or .

Use

Nitrogen difluoride is formed during the function of a xenon monofluoride excimer laser. Nitrogen trifluoride is the halide carrier gas, which releases fluoride ions when impacted by electrons:

The free fluoride ion goes on to react with xenon cations.

Nitrogen difluoride can be consumed further to yield nitrogen monofluoride.

References

Extra reading