Ion-Driven Self-Assembly of Lanthanide Bis-phthalocyaninates into Conductive Quasi-MOF Nanowires: An Approach toward Easily Recyclable Organic Electronics
Тип публикации: Journal Article
Дата публикации: 2021-10-06
scimago Q1
wos Q1
БС1
SJR: 0.958
CiteScore: 7.4
Impact factor: 4.7
ISSN: 00201669, 1520510X
PubMed ID:
34613717
Inorganic Chemistry
Physical and Theoretical Chemistry
Краткое описание
Controlled self-assembly and rapid disintegration of supramolecular nanowires is potentially useful for ecology-friendly organic electronics. Herein, a novel method exploiting the binding between crown-substituted double-decker lanthanide phthalocyaninates (ML2, M = Lu, Ce, Tb) and K+ ions is applied for the one-step fabrication of macroscopically long conductive one-dimensional quasi-metal-organic frameworks. Their properties are controlled by the size of the lanthanide ion guiding the assembly through either intra- or intermolecular interactions. A LuL2 linker with a small interdeck distance yields fully conjugated intermolecular-bonded K+-LuL2 nanowires with a thickness of 10-50 nm, a length of up to 50 μm, and a conductivity of up to 11.4 S cm-1, the highest among them being reported for phthalocyanine assemblies. The large size of CeL2 and TbL2 leads to the formation of mixed intra- and intermolecular K+-ML2 phases with poor electric properties. A field-assisted method is developed to deposit aligned conductive K+-LuL2 assemblies on solids. The solid-supported nanowires can be disintegrated into starting components in a good aprotic solvent for further recycling.
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Journal of Porphyrins and Phthalocyanines
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Colloid Journal
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Zvyagina A. I. et al. Ion-Driven Self-Assembly of Lanthanide Bis-phthalocyaninates into Conductive Quasi-MOF Nanowires: An Approach toward Easily Recyclable Organic Electronics // Inorganic Chemistry. 2021. Vol. 60. No. 20. pp. 15509-15518.
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Zvyagina A. I., Aleksandrov A. E., Martynov A. G., Tameev A., Baranchikov A. E., Ежов А. А., Gorbunova Y. G., Kalinina M. A. Ion-Driven Self-Assembly of Lanthanide Bis-phthalocyaninates into Conductive Quasi-MOF Nanowires: An Approach toward Easily Recyclable Organic Electronics // Inorganic Chemistry. 2021. Vol. 60. No. 20. pp. 15509-15518.
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TY - JOUR
DO - 10.1021/acs.inorgchem.1c02147
UR - https://pubs.acs.org/doi/10.1021/acs.inorgchem.1c02147
TI - Ion-Driven Self-Assembly of Lanthanide Bis-phthalocyaninates into Conductive Quasi-MOF Nanowires: An Approach toward Easily Recyclable Organic Electronics
T2 - Inorganic Chemistry
AU - Zvyagina, Alexandra I
AU - Aleksandrov, Alexey E
AU - Martynov, Alexander G.
AU - Tameev, Alexey
AU - Baranchikov, Alexander E
AU - Ежов, А. А.
AU - Gorbunova, Yulia G.
AU - Kalinina, Maria A
PY - 2021
DA - 2021/10/06
PB - American Chemical Society (ACS)
SP - 15509-15518
IS - 20
VL - 60
PMID - 34613717
SN - 0020-1669
SN - 1520-510X
ER -
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@article{2021_Zvyagina,
author = {Alexandra I Zvyagina and Alexey E Aleksandrov and Alexander G. Martynov and Alexey Tameev and Alexander E Baranchikov and А. А. Ежов and Yulia G. Gorbunova and Maria A Kalinina},
title = {Ion-Driven Self-Assembly of Lanthanide Bis-phthalocyaninates into Conductive Quasi-MOF Nanowires: An Approach toward Easily Recyclable Organic Electronics},
journal = {Inorganic Chemistry},
year = {2021},
volume = {60},
publisher = {American Chemical Society (ACS)},
month = {oct},
url = {https://pubs.acs.org/doi/10.1021/acs.inorgchem.1c02147},
number = {20},
pages = {15509--15518},
doi = {10.1021/acs.inorgchem.1c02147}
}
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Zvyagina, Alexandra I., et al. “Ion-Driven Self-Assembly of Lanthanide Bis-phthalocyaninates into Conductive Quasi-MOF Nanowires: An Approach toward Easily Recyclable Organic Electronics.” Inorganic Chemistry, vol. 60, no. 20, Oct. 2021, pp. 15509-15518. https://pubs.acs.org/doi/10.1021/acs.inorgchem.1c02147.