Accelerated Synthesis of a Ni2Cl2(BTDD) Metal–Organic Framework in a Continuous Flow Reactor for Atmospheric Water Capture

S Bagi, AM Wright, J Oppenheim… - ACS Sustainable …, 2021 - ACS Publications
Atmospheric water capture (AWC) has tremendous potential to address the global shortage
of clean drinking water. The Ni2Cl2 (BTDD) metal–organic framework (MOF) has shown …

High-performance solar-driven MOF AWH device with ultra-dense integrated modular design and reflux synthesis of Ni2Cl2 (BTDD)

Z Shao, YC Tang, H Lv, ZS Wang, P Poredoš, Y Feng… - Device, 2023 - cell.com
Metal-organic frameworks (MOFs) for sorption-based atmospheric water harvesting (AWH)
are promising for solving the global water crisis, but there are two major challenges: scaled …

Broadly tunable atmospheric water harvesting in multivariate metal–organic frameworks

Z Zheng, N Hanikel, H Lyu… - Journal of the American …, 2022 - ACS Publications
Development of multivariate metal–organic frameworks (MOFs) as derivatives of the state-of-
art water-harvesting material MOF-303 {[Al (OH)(PZDC)], where PZDC2–is 1 H-pyrazole-3, 5 …

Atmospheric water harvesting with metal-organic frameworks and their composites: from materials to devices

X Huang, Q Qin, Q Ma, B Wang - Water, 2022 - mdpi.com
Clean water scarcity is deteriorating because of the growing population and water pollution.
New methods to harvest freshwater from non-traditional water sources are urgently required …

Rapid cycling and exceptional yield in a metal-organic framework water harvester

N Hanikel, MS Prévot, F Fathieh, EA Kapustin… - ACS central …, 2019 - ACS Publications
Sorbent-assisted water harvesting from air represents an attractive way to address water
scarcity in arid climates. Hitherto, sorbents developed for this technology have exclusively …

Monitoring water harvesting in metal–organic frameworks, one water molecule at a time

KM Hunter, F Paesani - Chemical Science, 2024 - pubs.rsc.org
Metal–organic frameworks (MOFs) have gained prominence as potential materials for
atmospheric water harvesting, a vital solution for arid regions and areas experiencing …

MOF linker extension strategy for enhanced atmospheric water harvesting

N Hanikel, D Kurandina, S Chheda, Z Zheng… - ACS central …, 2023 - ACS Publications
A linker extension strategy for generating metal–organic frameworks (MOFs) with superior
moisture-capturing properties is presented. Applying this design approach involving …

In Silico Screening of Metal–organic Frameworks for Water Harvesting

YM Wang, A Datar, ZX Xu, LC Lin - The Journal of Physical …, 2024 - ACS Publications
The increasingly limited availability of fresh water has become one of the most prominent
challenges of our time, and therefore, producing clean water from unconventional sources is …

Active MOF water harvester with extraordinary productivity enabled by cooling-enhanced sorption

Y Feng, L Ge, Y Zhao, Q Li, R Wang… - Energy & Environmental …, 2024 - pubs.rsc.org
Extracting water from the air using a metal–organic framework (MOF) is an emerging
solution to mitigate the global water crisis. Reported MOF water harvesters have improved …

High-yield, green and scalable methods for producing MOF-303 for water harvesting from desert air

Z Zheng, HL Nguyen, N Hanikel, KKY Li, Z Zhou… - Nature …, 2023 - nature.com
Metal–organic frameworks (MOFs) are excellent candidates for water harvesting from desert
air. MOF-303 (Al (OH)(PZDC), where PZDC is 1-H-pyrazole-3, 5-dicarboxylate), a robust and …