Back to Search Start Over

Overcoming double-step CO2adsorption and minimizing water co-adsorption in bulky diamine-appended variants of Mg2(dobpdc)

Authors :
Milner, PJ
Martell, JD
Siegelman, RL
Gygi, D
Weston, SC
Long, JR
Source :
Milner, PJ; Martell, JD; Siegelman, RL; Gygi, D; Weston, SC; & Long, JR. (2017). Overcoming double-step CO2adsorption and minimizing water co-adsorption in bulky diamine-appended variants of Mg2(dobpdc). Chemical Science, 9(1), 160-174. doi: 10.1039/c7sc04266c. UC Berkeley: Retrieved from: http://www.escholarship.org/uc/item/8sf5k6gt
Publication Year :
2017
Publisher :
eScholarship, University of California, 2017.

Abstract

© 2018 The Royal Society of Chemistry. Alkyldiamine-functionalized variants of the metal-organic framework Mg2(dobpdc) (dobpdc4-= 4,4′-dioxidobiphenyl-3,3′-dicarboxylate) are promising for CO2capture applications owing to their unique step-shaped CO2adsorption profiles resulting from the cooperative formation of ammonium carbamate chains. Primary,secondary (1°,2°) alkylethylenediamine-appended variants are of particular interest because of their low CO2step pressures (≤1 mbar at 40 °C), minimal adsorption/desorption hysteresis, and high thermal stability. Herein, we demonstrate that further increasing the size of the alkyl group on the secondary amine affords enhanced stability against diamine volatilization, but also leads to surprising two-step CO2adsorption/desorption profiles. This two-step behavior likely results from steric interactions between ammonium carbamate chains induced by the asymmetrical hexagonal pores of Mg2(dobpdc) and leads to decreased CO2working capacities and increased water co-adsorption under humid conditions. To minimize these unfavorable steric interactions, we targeted diamine-appended variants of the isoreticularly expanded framework Mg2(dotpdc) (dotpdc4-= 4,4′′-dioxido-[1,1′:4′,1′′-terphenyl]-3,3′′-dicarboxylate), reported here for the first time, and the previously reported isomeric framework Mg-IRMOF-74-II or Mg2(pc-dobpdc) (pc-dobpdc4-= 3,3′-dioxidobiphenyl-4,4′-dicarboxylate, pc = para-carboxylate), which, in contrast to Mg2(dobpdc), possesses uniformally hexagonal pores. By minimizing the steric interactions between ammonium carbamate chains, these frameworks enable a single CO2adsorption/desorption step in all cases, as well as decreased water co-adsorption and increased stability to diamine loss. Functionalization of Mg2(pc-dobpdc) with large diamines such as N-(n-heptyl)ethylenediamine results in optimal adsorption behavior, highlighting the advantage of tuning both the pore shape and the diamine size for the development of new adsorbents for carbon capture applications.

Details

Language :
English
Database :
OpenAIRE
Journal :
Milner, PJ; Martell, JD; Siegelman, RL; Gygi, D; Weston, SC; & Long, JR. (2017). Overcoming double-step CO2adsorption and minimizing water co-adsorption in bulky diamine-appended variants of Mg2(dobpdc). Chemical Science, 9(1), 160-174. doi: 10.1039/c7sc04266c. UC Berkeley: Retrieved from: http://www.escholarship.org/uc/item/8sf5k6gt
Accession number :
edsair.od.......325..d3ce630655866472a4e298aa4c3c2680
Full Text :
https://doi.org/10.1039/c7sc04266c.