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Systematic variation of the optical bandgap in titanium based isoreticular metal-organic frameworks for photocatalytic reduction of CO2 under blue light

机译:蓝光下光催化减少二氧化钛的离子金属 - 有机框架中的光学带隙的系统变化

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摘要

A series of metal-organic frameworks isoreticular to MIL-125-NH2 were prepared, where the 2-amino-terephthalate organic links feature N-alkyl groups of increasing chain length (from methyl to heptyl) and varying connectivity (primary and secondary). The prepared materials display reduced optical bandgaps correlated with the inductive donor ability of the alkyl substituent as well as high photocatalytic activity towards the reduction of carbon dioxide under blue illumination operating over 120 h. Secondary N-alkyl substitution (isopropyl, cyclopentyl and cyclohexyl) exhibits larger apparent quantum yields than the primary N-alkyl analogs directly related to their longer lived excited-state lifetime. In particular, MIL-125-NHCyp (Cyp = cyclopentyl) exhibits a small bandgap (E-g = 2.30 eV), a long-lived excited-state (tau = 68.8 ns) and a larger apparent quantum yield (Phi(app) = 1.80%) compared to the parent MIL-125-NH2 (E-g = 2.56 eV, Phi(app) = 0.31%, tau = 12.8 ns), making it a promising candidate for the next generation of photocatalysts for solar fuel production based on earth-abundant elements.
机译:一系列的金属 - 有机骨架isoreticular到MIL-125-NH 2来制备,其中所述的2-氨基 - 对苯二甲酸有机链接功能增加链长度(从甲基至庚基)和不同的连接(伯和仲)的N-烷基的基团。将所制备的材料显示减少与烷基取代基的感应能力供体以及对二氧化碳的下蓝色照明操作超过120小时减少高的光催化活性相关的光学带隙。次级N-烷基取代(异丙基,环戊基和环己基)表现出较大的表观量子产率比直接与它们的较长寿命激发态寿命的主要N-烷基的类似物。特别地,MIL-125-NHCyp(CYP =环戊基)显示出小的带隙(Eg = 2.30电子伏特),长寿命的激发态(TAU = 68.8纳秒)和更大的表观量子效率(披(APP)= 1.80 %)相对于亲本MIL-125-NH 2(例如= 2.56电子伏特,披(APP)= 0.31%,tau蛋白= 12.8纳秒),使得它基于用于下一代光催化剂用于太阳能燃料生产的有希望的候选钻地丰富的元素。

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