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  4. Vapour growth, morphology, absolute structure and pyroelectric coefficient of meta-nitroaniline single crystals
 
research article

Vapour growth, morphology, absolute structure and pyroelectric coefficient of meta-nitroaniline single crystals

Hesterberg, Rolf
•
Bonin, Michel
•
Sommer, Martin
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2019
Journal of Applied Crystallography

The growth speed of (hkl) faces in the vapour phase, the absolute structure obtained by X-ray crystallography, and the value and the sign of the pyroelectric coefficient of meta-nitro­aniline (mNA) were analysed in detail. The in situ observation of morphologically well developed faces of several mNA crystals growing in evacuated ampoules reveals no pronounced growth speed anisotropy for polar faces defining the unique axis 2 of the mm2 group. Scanning pyroelectric microscopy confirms mono-domain mNA crystals. X-ray measurements in the space group Pca21 show that the molecular planes coincide with the {\bar 211} and {\bar 2\bar 1\bar 1} faces, and the nitro groups cover the {201} face in the opposite direction to the crystal tip, characterizing the polar habitus studied here. At room temperature, the sign of the pyroelectric coefficient is positive for a measured effective value of 6.3 µC m−2 K−1, in good agreement with values reported by other authors. From previous elastic and piezoelectric published data, the secondary pyroelectric effect was calculated to be positive and far greater than the effective one, yielding a negative value for the primary pyroelectric coefficient.

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Type
research article
DOI
10.1107/S160057671900414X
Author(s)
Hesterberg, Rolf
•
Bonin, Michel
•
Sommer, Martin
•
Burgener, Matthias
•
Trusch, Bernhard
•
Damjanovic, Dragan  
•
Hulliger, Jürg
Date Issued

2019

Published in
Journal of Applied Crystallography
Volume

52

Issue

3

Start page

564

End page

570

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
SCI-STI-DD  
Available on Infoscience
May 14, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/156417
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