- Home
- Search Results
- Page 1 of 1
Search for: All records
-
Total Resources4
- Resource Type
-
00000040000
- More
- Availability
-
31
- Author / Contributor
- Filter by Author / Creator
-
-
Chapman, Karena W (3)
-
Vornholt, Simon M (3)
-
Alzayer, Maytham (2)
-
Beauvais, Michelle L (2)
-
Chupas, Peter J (2)
-
Formalik, Filip (2)
-
Islamoglu, Timur (2)
-
Sanchez_Monserrate, Bryan A (2)
-
Sengupta, Debabrata (2)
-
Alhashem, Hussain (1)
-
Bose, Saptasree (1)
-
Chapman, Karena W. (1)
-
Chen, Yongwei (1)
-
Chen, Zhihengyu (1)
-
Del_Campo, Mark (1)
-
Farha, Omar K (1)
-
Farha, Omar K. (1)
-
Frank, Hilliary (1)
-
Hu, Danrui (1)
-
Idrees, Karam B (1)
-
- Filter by Editor
-
-
& Spizer, S. M. (0)
-
& . Spizer, S. (0)
-
& Ahn, J. (0)
-
& Bateiha, S. (0)
-
& Bosch, N. (0)
-
& Brennan K. (0)
-
& Brennan, K. (0)
-
& Chen, B. (0)
-
& Chen, Bodong (0)
-
& Drown, S. (0)
-
& Ferretti, F. (0)
-
& Higgins, A. (0)
-
& J. Peters (0)
-
& Kali, Y. (0)
-
& Ruiz-Arias, P.M. (0)
-
& S. Spitzer (0)
-
& Sahin. I. (0)
-
& Spitzer, S. (0)
-
& Spitzer, S.M. (0)
-
(submitted - in Review for IEEE ICASSP-2024) (0)
-
-
Have feedback or suggestions for a way to improve these results?
!
Note: When clicking on a Digital Object Identifier (DOI) number, you will be taken to an external site maintained by the publisher.
Some full text articles may not yet be available without a charge during the embargo (administrative interval).
What is a DOI Number?
Some links on this page may take you to non-federal websites. Their policies may differ from this site.
-
Free, publicly-accessible full text available April 17, 2025
-
Hu, Danrui ; Beauvais, Michelle L ; Kamm, Gabrielle E ; Mullens, Bryce G ; Sanchez_Monserrate, Bryan A ; Vornholt, Simon M ; Chupas, Peter J ; Chapman, Karena W ( , Journal of the American Chemical Society)
-
Wang, Xiaoliang ; Alzayer, Maytham ; Shih, Arthur J ; Bose, Saptasree ; Xie, Haomiao ; Vornholt, Simon M ; Malliakas, Christos D ; Alhashem, Hussain ; Joodaki, Faramarz ; Marzouk, Sammer ; et al ( , Journal of the American Chemical Society)CALF-20, a Zn-triazolate-based metal-organic framework (MOF), is one of the most promising adsorbent materials for CO2 capture. However, competitive adsorption of water severely limits its performance when the relative humidity (RH) exceeds 40%, limiting the potential implementation of CALF-20 in practical settings where CO2 is saturated with moisture, such as post-combustion flue gas. In this work, three newly designed MOFs related to CALF-20, denoted as NU-220, CALF-20M-w, and CALF-20M-e that feature hydrophobic methyl-triazolate linkers are presented. Inclusion of methyl groups in the linker is proposed as a strategy to improve CO2 uptake in the presence of water. Notably, both CALF-20M-w and CALF-20M-e retain over 20% of their initial CO2 capture efficiency at 70% RH – a threshold at which CALF-20 shows negligible CO2 uptake. Grand canonical Monte Carlo (GCMC) simulations reveal that the methyl group hinders water network formation in the pores of CALF-20M-w and CALF-20M-e and enhances their CO2 selectivity over N2 in the presence of high moisture content. Moreover, calculated radial distribution functions indicate that introducing the methyl group into the triazolate linker increases the distance between water molecules and Zn coordination bonds, offering insights into the origin of the enhanced moisture stability observed for CALF-20M-w and CALF-20M-e relative to CALF-20. Overall, this straightforward design strategy has afforded more robust sorbents that can potentially meet the challenge of effectively capturing CO2 in practical industrial applications.more » « less
-
Rayder, Thomas M. ; Formalik, Filip ; Vornholt, Simon M. ; Frank, Hilliary ; Lee, Seryeong ; Alzayer, Maytham ; Chen, Zhihengyu ; Sengupta, Debabrata ; Islamoglu, Timur ; Paesani, Francesco ; et al ( , Journal of the American Chemical Society)