@myalemus23@LatinXChem The pore sizes are 5.8, 8.5 and 11 Å for MOF-303, MIL-53 and DUT-5, respectively. This effect can be seen in the difference in the adsorption equilibrium time reached for the three materials. It is worth mentioning that the Qe is also affected by the linker functionalities.(3/3)
@myalemus23@LatinXChem The pH of Fig2e was 6. In the pH study, no significant variations were observed. Therefore, electrostatic interactions can be discarded since above pH 8, the BPA molecule is negatively charged, and the Z-potential of each material is negative. (2/3)
@myalemus23@LatinXChem Thank you for asking. The idea is to remediate contaminated water using porous MOF materials with low-toxic metals. The goal is to remove BPA from water, as it has been used to manufacture various plastics and has been found in multiple bodies of water in Mexico (1/3)
De Novo Synthesis of Acridone-Based Zn-Metal–Organic Framework (Zn-MOF) as a Photocatalyst: Application for Visible Light-Mediated Oxidation of Sulfides and Enaminones https://t.co/iMhXPJ8ILi
Switchable Metal Sites in Metal‐Organic Framework MFM‐300(Sc): Lewis Acid Catalysis Driven by Metal‐Hemilabile Linker Bond Dynamics https://t.co/JEKAhNICjO