UTSA-16? 2022 The Korean Society of Industrial and Engineering ChemistryA series of bimetallic UTSA-16 (Zn, X; X = Mg, Mn, and Cu) metal organic frameworks (MOFs) with different metal ratios was synthesized using a microwave irradiation method. Synthesis at an optimal Zn-to-metal ratio of...
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UTSA-16 (Zn) is the most promising adsorbent for CO 2 capture because of its excellent CO 2 capture performance and low material cost. An eco-friendly synthesis method for UTSA-16 (Zn) was investigated by changing the ratio of water to ethanol in solution (60:40 to 100:0) under ...
To this end we have developed novel magnetic framework composites (MFCs) comprised of MOF UTSA-16(Zn) (UTSA: University of Texas at San Antonio, a Zn-based MOF with citrate linkers) and Fe3O4 nanoparticles. Our work also addresses the sustainability and scalability challenges faced by MFCs ...
A novel flexible PAN fiber adsorbent was developed using an electrospinning technique with UTSA-16 (Co) and UTSA-16 (Zn) metal organic frameworks (MOFs). MOF powders with different ratios were dispersed within PAN fiber networks and processed to produce MOF crystalline layers under microwave ...
An irradiation time of 4 h produced 4h-UTSA-16 with an outstanding CO2 adsorption capacity of 4.71 mmol/g at 298 K and 1 bar and with CO2/N-2 selectivity of 118. The improvement in stability and CO2/N-2 sorption selectivity of UTSA-16 (Zn) over the parent UTSA-16 (Co) was not ...
A novel flexible PAN fiber adsorbent was developed using an electrospinning technique with UTSA-16 (Co) and UTSA-16 (Zn) metal organic frameworks (MOFs). MOF powders with different ratios were dispersed within PAN fiber networks and processed to produce MOF crystalline layers under microwave ...