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1 Ergebnisse
1
Elucidating the Reaction Pathway in the Ammonolysis of MoO ..:
Chi Zhang
;
Elise A. Goldfine
;
Kun He
...
doi:10.1021/acs.chemmater.3c01344.s001. , 2024
Link:
https://doi.org/10.1021/acs.chemmater.3c01344.s001
RT Journal T1
Elucidating the Reaction Pathway in the Ammonolysis of MoO 3 via In Situ Powder X‑ray Diffraction and Transmission Electron Microscopy
UL https://suche.suub.uni-bremen.de/peid=base-ftdeakinunifig:oai:figshare.com:article_25047806&Exemplar=1&LAN=DE A1 Chi Zhang A1 Elise A. Goldfine A1 Kun He A1 Jill K. Wenderott A1 Shobhit A. Pandey A1 Roberto dos Reis A1 Jiahong Shen A1 Chris Wolverton A1 Michael J. Bedzyk A1 Kenneth R. Poeppelmeier A1 Vinayak P. Dravid A1 Sossina M. Haile YR 2024 K1 Biochemistry K1 Microbiology K1 Genetics K1 Inorganic Chemistry K1 Infectious Diseases K1 Biological Sciences not elsewhere classified K1 Chemical Sciences not elsewhere classified K1 structure relationships among K1 800 ° c K1 situ powder x K1 molybdenum oxynitride morphology K1 material fully transforms K1 > K1 two key intermediates K1 commonly synthesized via K1 2 </ sub K1 reaction pathway provides K1 reaction pathway leading K1 3 </ sub K1 ></ sub K1 x </ K1 molybdenum nitrides K1 fully map K1 3 ) K1 sub >< K1 reaction pathway K1 reaction follows K1 reaction conditions K1 ≈ 0 K1 widespread adoption K1 wide variety K1 topotactic throughout K1 temperature intermediate K1 synthetic approach K1 route suggested K1 ray diffraction K1 prior literature K1 phase ammonia K1 oxide precursor K1 mon occurring K1 intermediate temperatures K1 hexagonal δ K1 future tuning K1 elevated temperature K1 comprehensive elucidation JF doi:10.1021/acs.chemmater.3c01344.s001 LK http://dx.doi.org/https://doi.org/10.1021/acs.chemmater.3c01344.s001 DO https://doi.org/10.1021/acs.chemmater.3c01344.s001 SF ELIB - SuUB Bremen
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