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Unusual linkage photoisomerization in [Co(NH 3 ) 2 NO 2 ] 2 I 3 Cl single crystals. / Kalinina, Polina P.; Zakharov, Boris A.
In: CrystEngComm, Vol. 36, 2024.Research output: Contribution to journal › Article › peer-review
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TY - JOUR
T1 - Unusual linkage photoisomerization in [Co(NH 3 ) 2 NO 2 ] 2 I 3 Cl single crystals
AU - Kalinina, Polina P.
AU - Zakharov, Boris A.
PY - 2024
Y1 - 2024
N2 - The reaction [Co(NH 3 ) 5 NO 2 ] 2+ → [Co(NH 3 ) 5 ONO] 2+ proceeds under visible light for cations in certain crystallographic positions only in [Co(NH 3 ) 5 NO 2 ] 2 I 3 Cl, that suggests “crystallographic control” of reactivity within the same crystal structure. We report the unusual linkage photoisomerization for [Co(NH 3 ) 5 NO 2 ] 2 I 3 Cl. The reaction [Co(NH 3 ) 5 NO 2 ] 2+ → [Co(NH 3 ) 5 ONO] 2+ occurs upon irradiation by visible light for complex cations in certain crystallographic positions only. This feature, suggesting “crystallographic control” of reactivity within the same crystal structure, has been analysed via detailed analysis of crystal structures and IR spectra of the reagent and product.
AB - The reaction [Co(NH 3 ) 5 NO 2 ] 2+ → [Co(NH 3 ) 5 ONO] 2+ proceeds under visible light for cations in certain crystallographic positions only in [Co(NH 3 ) 5 NO 2 ] 2 I 3 Cl, that suggests “crystallographic control” of reactivity within the same crystal structure. We report the unusual linkage photoisomerization for [Co(NH 3 ) 5 NO 2 ] 2 I 3 Cl. The reaction [Co(NH 3 ) 5 NO 2 ] 2+ → [Co(NH 3 ) 5 ONO] 2+ occurs upon irradiation by visible light for complex cations in certain crystallographic positions only. This feature, suggesting “crystallographic control” of reactivity within the same crystal structure, has been analysed via detailed analysis of crystal structures and IR spectra of the reagent and product.
UR - https://www.mendeley.com/catalogue/f268ce9e-f9db-34f8-9f94-0a7381712d4f/
U2 - 10.1039/d4ce00734d
DO - 10.1039/d4ce00734d
M3 - Article
VL - 36
JO - CrystEngComm
JF - CrystEngComm
SN - 1466-8033
ER -
ID: 60517161