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Histidine


Condensed phase thermochemistry data

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: Hussein Y. Afeefy, Joel F. Liebman, and Stephen E. Stein

Quantity Value Units Method Reference Comment
Deltafsolid-441.8 ± 2.6kJ/molCcbVasilev, Borodin, et al., 1989Author was aware that data differs from previously reported values
Deltafsolid-466.7 ± 2.8kJ/molCcbWilson, Watson, et al., 1979 
Quantity Value Units Method Reference Comment
Deltacsolid-3205.5 ± 2.5kJ/molCcbVasilev, Borodin, et al., 1989Author was aware that data differs from previously reported values
Deltacsolid-3180.6 ± 2.3kJ/molCcbWilson, Watson, et al., 1979 

Phase change data

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: William E. Acree, Jr., James S. Chickos

Enthalpy of sublimation

DeltasubH (kJ/mol) Temperature (K) Method Reference Comment
142. ± 8.442.LEGaffney, Pierce, et al., 1977Based on data from 392. - 492. K.

Reaction thermochemistry data

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled as indicated in comments:
B - John E. Bartmess
RCD - Robert C. Dunbar

Note: Please consider using the reaction search for this species. This page allows searching of all reactions involving this species. A general reaction search form is also available. Future versions of this site may rely on reaction search pages in place of the enumerated reaction displays seen below.

Individual Reactions

C6H8N3O2- + Hydrogen cation = Histidine

By formula: C6H8N3O2- + H+ = C6H9N3O2

Quantity Value Units Method Reference Comment
Deltar1375. ± 7.9kJ/molCIDCJones, Bernier, et al., 2007gas phase; B
Deltar1385. ± 13.kJ/molG+TSO'Hair, Bowie, et al., 1992gas phase; B
Quantity Value Units Method Reference Comment
Deltar1356. ± 13.kJ/molCIDCO'Hair, Bowie, et al., 1992gas phase; B

Sodium ion (1+) + Histidine = (Sodium ion (1+) bullet Histidine)

By formula: Na+ + C6H9N3O2 = (Na+ bullet C6H9N3O2)

Quantity Value Units Method Reference Comment
Deltar219.kJ/molCIDCKish, Ohanessian, et al., 2003Anchor alanine=39.89; RCD

IR Spectrum

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: Timothy J. Johnson, Tanya L. Myers, Yin-Fong Su, Russell G. Tonkyn, Molly Rose K. Kelly-Gorham, and Tyler O. Danby

Condensed Phase Spectrum

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IR spectrum
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Additional Data

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Particle size distribution data for this spectrum is available.

Owner Public domain
Origin Pacific Northwest National Laboratory Under IARPA Contract
Date March 2017
State solid
Instrument Bruker Tensor 37 FTIR
Aperture 6 mm
External diffuse reflectance accessory A 562-G integrating sphere
Beam splitter Ge on KBr
Diameter of detector port in sphere 2×2 mm, 60° field of view MCT
Sphere diameter 75 mm
Acquisition mode double-sided, forward-backward
Scanner velocity 40 kHz
Co-added scans 2048
Phase resolution 32.00
Phase correction Mertz
Zero filling
Spectral range 7,500 to 600 cm-1 saved; 7500 to 600 cm-1 reported
Resolution 0.96450084
Spectral resolution 4 cm-1
Wavenumber accuracy ± 0.4 cm-1
Apodization function Blackman-Harris 3-term
Low-pass filter Open
Switch gain on 512 points

Mass spectrum (electron ionization)

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: NIST Mass Spectrometry Data Center, William E. Wallace, director

Spectrum

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Mass spectrum
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Additional Data

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Owner NIST Mass Spectrometry Data Center
Collection (C) 2014 copyright by the U.S. Secretary of Commerce
on behalf of the United States of America. All rights reserved.
Origin Japan AIST/NIMC Database- Spectrum MS-NW-2506
NIST MS number 228152

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References

Go To: Top, Condensed phase thermochemistry data, Phase change data, Reaction thermochemistry data, IR Spectrum, Mass spectrum (electron ionization), Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Vasilev, Borodin, et al., 1989
Vasilev, V.P.; Borodin, V.A.; Kopnyshev, S.B., Standard enthalpies of formation of L-histidine and L-proline, Russ. J. Phys. Chem. (Engl. Transl.), 1989, 63, 891-892. [all data]

Wilson, Watson, et al., 1979
Wilson, S.R.; Watson, I.D.; Malcolm, G.N., Enthalpies of formation of solid cytosine, L-histidine, and uracil, J. Chem. Thermodyn., 1979, 11, 911-912. [all data]

Gaffney, Pierce, et al., 1977
Gaffney, Jeffrey S.; Pierce, Robert C.; Friedman, Lewis, Mass spectrometer study of evaporation of .alpha.-amino acids, J. Am. Chem. Soc., 1977, 99, 13, 4293-4298, https://doi.org/10.1021/ja00455a015 . [all data]

Jones, Bernier, et al., 2007
Jones, C.M.; Bernier, M.; Carson, E.; Colyer, K.E.; Metz, R.; Pawlow, A.; Wischow, E.D.; Webb, I.; Andriole, E.J.; Poutsma, J.C., Gas-phase Acities of the 20 Protein Amino Acids, Int. J. Mass Spectrom., 2007, 267, 1-3, 54-62, https://doi.org/10.1016/j.ijms.2007.02.018 . [all data]

O'Hair, Bowie, et al., 1992
O'Hair, R.J.; Bowie, J.H.; Gronert, S., Gas Phase Acidity of the alpha-Amino Acids, Int. J. Mass Spectrom. Ion Proc., 1992, 117, 23, https://doi.org/10.1016/0168-1176(92)80083-D . [all data]

Kish, Ohanessian, et al., 2003
Kish, M.M.; Ohanessian, G.; Wesdemiotis, C., The Na+ affinities of a-amino acids: side-chain substituent effects, Int. J. Mass Spectrom., 2003, 227, 3, 509, https://doi.org/10.1016/S1387-3806(03)00082-4 . [all data]


Notes

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