crystal chemistry
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CrystEngComm ◽  
2022 ◽  
Author(s):  
Anthony D. Shircliff ◽  
Dustin J. Davilla ◽  
Elisabeth M. A. Allbritton ◽  
Michael-Joseph Gorbet ◽  
Donald G. Jones ◽  
...  

Tetraazamacrocycles have been very extensively exploited as transition metal ligands for a variety of purposes, including catalysis, medical imaging, pharmaceuticals, etc. However, the pentaazamacrocycles are much less commonly used for...


Author(s):  
Robert D. Aughterson ◽  
Gregory R. Lumpkin ◽  
Zhaoming Zhang ◽  
Maxim Avdeev ◽  
Linggen Kong

2021 ◽  
Vol 66 (12) ◽  
pp. 1917-1924
Author(s):  
I. M. Isaev ◽  
V. G. Kostishin ◽  
V. V. Korovushkin ◽  
M. N. Shipko ◽  
A. V. Timofeev ◽  
...  

2021 ◽  
Vol 62 (12) ◽  
pp. 1935-1945
Author(s):  
S. V. Rashchenko ◽  
T. B. Bekker
Keyword(s):  

2021 ◽  
Vol 176 (12) ◽  
Author(s):  
Sarah Figowy ◽  
Benoît Dubacq ◽  
Philippe D’Arco
Keyword(s):  

2021 ◽  
Vol 40 (4) ◽  
pp. 591-597
Author(s):  
S.N. Ude ◽  
C.J. Rawn ◽  
T.T. Meek

X-ray and neutron powder diffraction have been used to study the crystal chemistry of Fe doped mayenite (Ca12Al14-xFexO33). Solid- state synthesis was used to prepare Ca12Al14-xFexO33 where x = 0, 0.1, 0.2, 0.5 and 0.6 and the citrate gel route was used to prepare Ca12Al14-xFexO33 where x = 0, 0.05, 0.1, 0.2, 0.3 and 0.4. X-ray powder diffraction data indicate that samples with the same composition but synthesized by the citrate gel route were more likely to be phase pure than samples obtained by traditional solid-state synthesis. The refined lattice parameters were observed to increase with increasing Fe concentration, irrespective of the synthesis method. Refined neutron powder data confirm that Fe is going into Al site rather than Ca site. A 2-point probe was used to measure the electrical properties of the Fe doped citrate gel synthesized samples and showed that the resistivity increases for the Fe doped samples compared to the undoped mayenite.


2021 ◽  
Vol MA2021-02 (2) ◽  
pp. 211-211
Author(s):  
Christian Masquelier ◽  
Sunkyu Park ◽  
Ziliang Wang ◽  
Baltej Gill ◽  
Antonella Iadecola ◽  
...  
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