weizhao-cof.bsky.social
weizhao-cof.bsky.social
@weizhao-cof.bsky.social
Reposted by weizhao-cof.bsky.social
A water-assisted microwave method enables rapid, eco-friendly synthesis of imide-linked COFs with enhanced crystallinity and porosity, showing strong potential for lithium-ion battery applications. doi.org/g9hb3z
Water-assisted microwave synthesis of porous COF materials for lithium-ion batteries
In our recent study published in the Journal of the American Chemical Society, our team from the National University of Singapore has developed a rapid and eco-friendly method for synthesizing imide-linked covalent organic frameworks (COFs) using a water-assisted microwave approach.
phys.org
May 9, 2025 at 1:32 PM
Reposted by weizhao-cof.bsky.social
Water-Assisted Microwave Synthesis of Imide-Linked Covalent Organic Frameworks in Minutes http://dx.doi.org/10.1021/jacs.5c01990
April 30, 2025 at 2:14 PM
Reposted by weizhao-cof.bsky.social
Covalent Organic Frameworks for Water Sorption: The Importance of Framework Physical Stability https://advanced.onlinelibrary.wiley.com/doi/10.1002/adfm.202514901?af=R
September 19, 2025 at 10:15 AM
Reposted by weizhao-cof.bsky.social
Introducing molecular "rivets" in covalent organic frameworks enhances their stability in humid air, enabling durable, high-capacity water capture for applications like dehumidification and heat pumps. doi.org/g94kst
Molecular rivets keep porous materials from collapsing in humid air
Covalent organic frameworks (COFs) have been hailed as next-generation materials for capturing water from air, powering dehumidifiers, and driving energy-efficient heat pumps.
phys.org
September 23, 2025 at 4:50 PM