Further exploration of the physicochemical nature of μ2-bridge-relevant deprotonations via the elucidation of four kinds of alditol complexes
Yi Wu
1, 2, 3
,
Linchen Xie
4
,
Ye Jiang
2
,
ANQI HE
2
,
Da Li
3
,
Limin Yang
1
,
Yizhuang Xu
2
,
Kexin Liu
1
,
Y. Ozaki
2, 5
,
Isao Noda
2, 6
2
Publication type: Journal Article
Publication date: 2025-01-01
scimago Q2
wos Q2
SJR: 0.698
CiteScore: 5.3
Impact factor: 2.9
ISSN: 14639076, 14639084
PubMed ID:
39704137
Abstract
Single-crystal structures of four alditol complexes are presented. In LuCl3/galactitol and ScCl3/myo-inositol complexes, μ2-bridge-relevant deprotonations were observed. The polarization from two rare earth ions in the μ2-bridge activates the chemically inert OH and promotes deprotonation. Additionally, mass spectrometry, pH experiments, and quantum chemistry calculations were conducted to enhance our understanding of the μ2-bridge-relevant deprotonations. A common structural feature of the complexes where μ2-bridge-relevant deprotonation takes place is that two metal ions and two oxygen atoms in two μ2-bridges form an M2O2 cluster. The four atoms in the M2O2 cluster make up a parallelogram. Such a structure is useful to balance the strong coulombic repulsions between two M3+ and between two O−. In the ScCl3/myo-inositol complex, the deprotonation exhibits a characteristic of regional/chiral selectivity. Galactitol is a third alditol ligand where μ2-bridge-relevant deprotonation is observed. The flexible backbone of the galactitol allows the formation of more five-membered chelating rings and six-membered chelating rings, which are used to stabilize the rare earth ions of the μ2-bridge. The coordination makes the backbone of galactitol deviate from the zigzag conformation. The above results are helpful in the rational design of high-performance catalysts.
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Wu Y. et al. Further exploration of the physicochemical nature of μ2-bridge-relevant deprotonations via the elucidation of four kinds of alditol complexes // Physical Chemistry Chemical Physics. 2025. Vol. 27. No. 3. pp. 1503-1514.
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Wu Y., Xie L., Jiang Y., HE A., Li D., Yang L., Xu Y., Liu K., Ozaki Y., Noda I. Further exploration of the physicochemical nature of μ2-bridge-relevant deprotonations via the elucidation of four kinds of alditol complexes // Physical Chemistry Chemical Physics. 2025. Vol. 27. No. 3. pp. 1503-1514.
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TY - JOUR
DO - 10.1039/d4cp03612c
UR - https://xlink.rsc.org/?DOI=D4CP03612C
TI - Further exploration of the physicochemical nature of μ2-bridge-relevant deprotonations via the elucidation of four kinds of alditol complexes
T2 - Physical Chemistry Chemical Physics
AU - Wu, Yi
AU - Xie, Linchen
AU - Jiang, Ye
AU - HE, ANQI
AU - Li, Da
AU - Yang, Limin
AU - Xu, Yizhuang
AU - Liu, Kexin
AU - Ozaki, Y.
AU - Noda, Isao
PY - 2025
DA - 2025/01/01
PB - Royal Society of Chemistry (RSC)
SP - 1503-1514
IS - 3
VL - 27
PMID - 39704137
SN - 1463-9076
SN - 1463-9084
ER -
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@article{2025_Wu,
author = {Yi Wu and Linchen Xie and Ye Jiang and ANQI HE and Da Li and Limin Yang and Yizhuang Xu and Kexin Liu and Y. Ozaki and Isao Noda},
title = {Further exploration of the physicochemical nature of μ2-bridge-relevant deprotonations via the elucidation of four kinds of alditol complexes},
journal = {Physical Chemistry Chemical Physics},
year = {2025},
volume = {27},
publisher = {Royal Society of Chemistry (RSC)},
month = {jan},
url = {https://xlink.rsc.org/?DOI=D4CP03612C},
number = {3},
pages = {1503--1514},
doi = {10.1039/d4cp03612c}
}
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Wu, Yi, et al. “Further exploration of the physicochemical nature of μ2-bridge-relevant deprotonations via the elucidation of four kinds of alditol complexes.” Physical Chemistry Chemical Physics, vol. 27, no. 3, Jan. 2025, pp. 1503-1514. https://xlink.rsc.org/?DOI=D4CP03612C.
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