Engineering the Optical Response of the Titanium-MIL-125 Metal-Organic Framework through Ligand Functionalization

被引:726
作者
Hendon, Christopher H. [1 ]
Tiana, Davide [1 ]
Fontecave, Marc [2 ]
Sanchez, Clement [3 ]
D'arras, Loic [3 ]
Sassoye, Capucine [3 ]
Rozes, Laurence [3 ]
Mellot-Draznieks, Caroline [2 ]
Walsh, Aron [1 ]
机构
[1] Univ Bath, Dept Chem, Bath BA2 7AY, Avon, England
[2] CNRS, Coll France, Lab Chim Proc Biol, FRE 3488, F-75005 Paris, France
[3] UPMC Univ Paris 06, Coll France, UMR 7574, F-75231 Paris 05, France
基金
英国工程与自然科学研究理事会;
关键词
BAND-GAPS; CO2; MOFS; PHOTOCATALYST; TUNABILITY; SEPARATION; AMINO; ZN;
D O I
10.1021/ja405350u
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Herein we discuss band gap modification of MIL-125, a TiO2/1,4-benzenedicarboxylate (bdc) metal-organic framework (MOF). Through a combination of synthesis and computation, we elucidated the electronic structure of MIL-125 with aminated linkers. The band gap decrease observed when the monoaminated bdc-NH2 linker was used arises from donation of the N 2p electrons to the aromatic linking unit, resulting in a red-shifted band above the valence-band edge of MIL-125. We further explored in silico MIL-125 with the diaminated linker bdc(NH2)(2) and other functional groups (-OH, -CH3, -Cl) as alternative substitutions to control the optical response. The bdc-(NH2)2 linking unit was predicted to lower the band gap of MIL-125 to 1.28 eV, and this was confirmed through the targeted synthesis of the bdc-(NH2)(2)-based MIL,-125. This study illustrates the possibility of tuning the optical response of MOFs through rational functionalization of the linking unit, and the strength of combined synthetic/computational approaches for targeting functionalized hybrid materials.
引用
收藏
页码:10942 / 10945
页数:4
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