Harvesting Water from Air with High-Capacity, Stable Furan-Based Metal–Organic Frameworks
Preprint 2023 en
Authors
AA
Ali H. Alawadhi
SC
Saumil Chheda
GS
Gautam D. Stroscio
Abstract
1 min read
We synthesized two isoreticular furan-based metal–organic frameworks (MOFs), MOF-LA2-1(furan) and MOF-LA2-2(furan) with rod-like secondary building units (SBUs) featuring 1D channels, as sorbents for atmospheric water harvesting (LA = long arm). These aluminum-based MOFs demonstrated a combination of high water uptake and stability, exhibiting working capacities of 0.41 and 0.48 g of water per g of MOF (under isobaric conditions of 1.70 kPa), respectively. Remarkably, both MOFs showed negligible loss in water uptake after 165 adsorption-desorption cycles. These working capacities rival those of MOF-LA2-1(pyrazole), which has a working capacity of 0.55 g of water per g of MOF. The current MOFs stand out for their high water stability as evidenced by 165 cycles of water uptake and release. MOF-LA2-2(furan) is the first aluminum MOF to employ a double 'long arm' extension strategy, confirmed through single-crystal X-ray diffraction (SCXRD). The MOFs were synthesized using a straightforward synthesis route. This study offers valuable insights into designing durable, water-stable MOFs and underscores their potential for efficient water harvesting.
Ali H. Alawadhi, Saumil Chheda, Gautam D. Stroscio, Zichao Rong, Daria Kurandina, Ha L. Nguyen, Nakul Rampal, Zhiling Zheng, Laura Gagliardi, Omar M Yaghi
Zhiling Zheng, Ali H. Alawadhi, Saumil Chheda, Silvio Neumann, Nakul Rampal, Shengchao Liu, Ha L. Nguyen, Yen-hsu Lin, Zichao Rong, J. Ilja Siepmann, Laura Gagliardi, Anima Anandkumar, Christian Borgs, Jennifer Chayes, Omar M Yaghi
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