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Updated: Dec 10, 2025

Analytical Techniques for Assaying Nitric Oxide Bioactivity
Published on: June 18, 2012
Porous Ti-MOF-74 Framework as a Strong-Binding Nitric Oxide Scavenger
Stephanie Jensen1,2, Kui Tan3, Liang Feng4
1Department of Physics, Wake Forest University, Winston-Salem, North Carolina 27109, United States.
Abstract:
Combining synthesis, infrared spectroscopy, and ab initio modeling we show that the titanium-based porous framework Ti-MOF-74 has potential as an environmental nitric oxide (NO) scavenger, exhibiting an extraordinarily strong binding affinity and selectivity over other flue-gas components. The robustness upon exposure to water vapor and high flue-gas stack temperatures suggests that this material can perform well in an industrial environment. In-depth analysis of the Ti-NO bond indicates that the NO forms a strong covalent bond with the Ti. The process of this NO bond formation involves a reaction with the OH- capping groups of the Ti to form NO groups, after which the excess NO binds to the open Ti metal sites. Ti-MOF-74 thus becomes, to the best of our knowledge, the first known porous framework that binds NO significantly stronger than water, providing novel avenues for environmental and physiological scavenging applications.
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