Article Open Access August 14, 2021

Syntheses of Novel Coordination Polymers Using Bis-Imidazole Ligand Having Steric Hindrance and Methoxy Group

1
Department of Chemistry, Graduate School of Integrated Science and Technology, Shizuoka University, Shizuoka, Japan
2
Green Bio Research Division, Research Institute of Green Science Technology, Shizuoka University, Shizuoka, Japan
Page(s): 29-37
Received
July 06, 2021
Revised
August 01, 2021
Accepted
August 13, 2021
Published
August 14, 2021
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.
Copyright: Copyright © The Author(s), 2021. Published by Scientific Publications
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APA Style
Fauzi, B. O. A. , & Kondo, M. (2021). Syntheses of Novel Coordination Polymers Using Bis-Imidazole Ligand Having Steric Hindrance and Methoxy Group. Current Research in Public Health, 1(1), 29-37. https://doi.org/10.31586/ojc.2021.010104
ACS Style
Fauzi, B. O. A. ; Kondo, M. Syntheses of Novel Coordination Polymers Using Bis-Imidazole Ligand Having Steric Hindrance and Methoxy Group. Current Research in Public Health 2021 1(1), 29-37. https://doi.org/10.31586/ojc.2021.010104
Chicago/Turabian Style
Fauzi, Billy Oktora Abdilah, and Mitsuru Kondo. 2021. "Syntheses of Novel Coordination Polymers Using Bis-Imidazole Ligand Having Steric Hindrance and Methoxy Group". Current Research in Public Health 1, no. 1: 29-37. https://doi.org/10.31586/ojc.2021.010104
AMA Style
Fauzi BOA, Kondo M. Syntheses of Novel Coordination Polymers Using Bis-Imidazole Ligand Having Steric Hindrance and Methoxy Group. Current Research in Public Health. 2021; 1(1):29-37. https://doi.org/10.31586/ojc.2021.010104
@Article{crph84,
AUTHOR = {Fauzi, Billy Oktora Abdilah and Kondo, Mitsuru},
TITLE = {Syntheses of Novel Coordination Polymers Using Bis-Imidazole Ligand Having Steric Hindrance and Methoxy Group},
JOURNAL = {Current Research in Public Health},
VOLUME = {1},
YEAR = {2021},
NUMBER = {1},
PAGES = {29-37},
URL = {/10.31586/ojc-1-1-410.31586/ojc/1/1/4},
ISSN = {2831-5162},
DOI = {10.31586/ojc.2021.010104},
ABSTRACT = {Three novel coordination polymers {[Cu2(bitbu-OMe)4(SO4)2]·6MeOH}n (1), {[Co2(bitbu-OMe)4(NCS)4]0.5·2DMF}n (2), {[Co(bitbu-OMe)2(NCS)2]·2MeOH}n (3) (bitbu-OMe = 1,1’-[(5-tert-butyl-2-methoxybenzene-1,3-diyl)dimethanediyl]bis(1H-imidazole)) are synthesized through a slow evaporation method using solvothermal technique of CuSO4·5H2O or Co(SCN)2 with bitbu-OMe. X-ray diffraction analysis results reveal that 1, 2, and 3 have similar two-dimensional layer networks. The study of the effect of the methoxy group in bitbu-OMe towards the stability of ligand conformation in obtained coordination polymers becomes necessary to be conducted in the future to unveil the reason for conformation similarity of ligand in coordination polymers.},
}
%0 Journal Article
%A Fauzi, Billy Oktora Abdilah
%A Kondo, Mitsuru
%D 2021
%J Current Research in Public Health

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%T Syntheses of Novel Coordination Polymers Using Bis-Imidazole Ligand Having Steric Hindrance and Methoxy Group
%M doi:10.31586/ojc.2021.010104
%U /10.31586/ojc-1-1-410.31586/ojc/1/1/4
TY  - JOUR
AU  - Fauzi, Billy Oktora Abdilah
AU  - Kondo, Mitsuru
TI  - Syntheses of Novel Coordination Polymers Using Bis-Imidazole Ligand Having Steric Hindrance and Methoxy Group
T2  - Current Research in Public Health
PY  - 2021
VL  - 1
IS  - 1
SN  - 2831-5162
SP  - 29
EP  - 37
UR  - /10.31586/ojc-1-1-410.31586/ojc/1/1/4
AB  - Three novel coordination polymers {[Cu2(bitbu-OMe)4(SO4)2]·6MeOH}n (1), {[Co2(bitbu-OMe)4(NCS)4]0.5·2DMF}n (2), {[Co(bitbu-OMe)2(NCS)2]·2MeOH}n (3) (bitbu-OMe = 1,1’-[(5-tert-butyl-2-methoxybenzene-1,3-diyl)dimethanediyl]bis(1H-imidazole)) are synthesized through a slow evaporation method using solvothermal technique of CuSO4·5H2O or Co(SCN)2 with bitbu-OMe. X-ray diffraction analysis results reveal that 1, 2, and 3 have similar two-dimensional layer networks. The study of the effect of the methoxy group in bitbu-OMe towards the stability of ligand conformation in obtained coordination polymers becomes necessary to be conducted in the future to unveil the reason for conformation similarity of ligand in coordination polymers.
DO  - Syntheses of Novel Coordination Polymers Using Bis-Imidazole Ligand Having Steric Hindrance and Methoxy Group
TI  - 10.31586/ojc.2021.010104
ER  -