TY - JOUR
T1 - Control of Gas Sorption Gate-opening in Solid Solutions of One-dimensional Coordination Polymers
AU - Zhang, Jun
AU - Kosaka, Wataru
AU - Miyasaka, Hitoshi
N1 - Funding Information:
This work was supported by a Grant-in-Aid for Scientific Research (Nos. 16H02269, 18K19050, 18K05055, 18H05208) from MEXT, Japan, and on Innovative Areas (“π-System Figuration” Area 2601, No. 17H05137) from JSPS, Japan, and Grant Fund for Research and Education of Institute for Materials Research, Tohoku University. J.Z. is thankful for the JSPS KAKENHI (No. 17J02497).
Publisher Copyright:
© 2019 Chemical Society of Japan. All rights reserved.
PY - 2019
Y1 - 2019
N2 - An isostructural solid solution series of one-dimensional coordination polymers, [(Ru(1 1x)Rhx)2(2,4,5-Me3PhCO2)4(phz)] (x = 0, 0.1, 0.22, 0.39, 0.55, and 1; 2,4,5-Me3PhCO2 1 = 2,4,5-trimethylbenzoate; phz = phenazine), was prepared by mixing [Rh2 II,II(2,4,5-Me3PhCO2)4] with [Ru2 II,II(2,4,5-Me3PhCO2)4] in x:(1 1 x) reaction ratios, respectively. This series of compounds systematically tunes the gate-opening pressures for the adsorption of CO2 (195 K) and NO (121 K), suggesting a feasible and simple method to modulate the gate-opening pressures.
AB - An isostructural solid solution series of one-dimensional coordination polymers, [(Ru(1 1x)Rhx)2(2,4,5-Me3PhCO2)4(phz)] (x = 0, 0.1, 0.22, 0.39, 0.55, and 1; 2,4,5-Me3PhCO2 1 = 2,4,5-trimethylbenzoate; phz = phenazine), was prepared by mixing [Rh2 II,II(2,4,5-Me3PhCO2)4] with [Ru2 II,II(2,4,5-Me3PhCO2)4] in x:(1 1 x) reaction ratios, respectively. This series of compounds systematically tunes the gate-opening pressures for the adsorption of CO2 (195 K) and NO (121 K), suggesting a feasible and simple method to modulate the gate-opening pressures.
KW - Gas sorption properties
KW - One-dimensional coordination polymers
KW - Solid solutions
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U2 - 10.1246/cl.190557
DO - 10.1246/cl.190557
M3 - Review article
AN - SCOPUS:85073372027
SN - 0366-7022
VL - 48
SP - 1308
EP - 1311
JO - Chemistry Letters
JF - Chemistry Letters
IS - 11
ER -