Kalaj Mark, Cohen Seth M
Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, CA, 92093, USA.
Angew Chem Int Ed Engl. 2020 Aug 10;59(33):13984-13989. doi: 10.1002/anie.202004205. Epub 2020 Jun 4.
A UiO-66-NCS MOF was formed by postsynthetic modification of UiO-66-NH . The UiO-66-NCS MOFs displays a circa 20-fold increase in activity against the chemical warfare agent simulant dimethyl-4-nitrophenyl phosphate (DMNP) compared to UiO-66-NH , making it the most active MOF materials using a validated high-throughput screening. The -NCS functional groups provide reactive handles for postsynthetic polymerization of the MOFs into functional materials. These MOFs can be tethered to amine-terminated polypropylene polymers (Jeffamines) through a facile room-temperature synthesis with no byproducts. The MOFs are then crosslinked into a MOF-polythiourea (MOF-PTU) composite material, maintaining the catalytic properties of the MOF and the flexibility of the polymer. This MOF-PTU hybrid material was spray-coated onto Nyco textile fibers, displaying excellent adhesion to the fiber surface. The spray-coated fibers were screened for the degradation of DMNP and showed durable catalytic reactivity.
通过对UiO-66-NH₂进行后合成修饰形成了UiO-66-NCS金属有机框架(MOF)。与UiO-66-NH₂相比,UiO-66-NCS MOF对化学战剂模拟物磷酸二甲基-4-硝基苯酯(DMNP)的活性提高了约20倍,使其成为使用经过验证的高通量筛选方法的最具活性的MOF材料。-NCS官能团为MOF后合成聚合成功能材料提供了反应位点。这些MOF可以通过简便的室温合成与胺端基聚丙烯聚合物(Jeffamines)连接,且无副产物。然后将MOF交联成MOF-聚硫脲(MOF-PTU)复合材料,保持MOF的催化性能和聚合物的柔韧性。这种MOF-PTU杂化材料被喷涂到Nyco纺织纤维上,对纤维表面显示出优异的附着力。对喷涂纤维进行DMNP降解筛选,结果显示出持久的催化反应活性。