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Chemical Engineering of Photoactivity in Heterometallic Titanium–Organic Frameworks by Metal Doping
Authors:Dr. Neyvis Almora‐Barrios  Dr. Josep Albero  Dr. A. Rabdel Ruiz‐Salvador  Dr. Javier González‐Platas  Prof. Hermenegildo García  Dr. Carlos Martí‐Gastaldo
Affiliation:1. Universidad de Valencia (ICMol), Paterna, Spain;2. Instituto Universitario de Tecnología Química CSIC-UPV, Universitat Politècnica de València, Valencia, Spain;3. Department of Physical, Chemical and Natural Systems, Universidad Pablo de Olavide, Sevilla, Spain;4. Departamento de Física, Universidad de La Laguna, Santa Cruz, de Tenerife, Spain
Abstract:We report a new family of titanium–organic frameworks that enlarges the limited number of crystalline, porous materials available for this metal. They are chemically robust and can be prepared as single crystals at multi‐gram scale from multiple precursors. Their heterometallic structure enables engineering of their photoactivity by metal doping rather than by linker functionalization. Compared to other methodologies based on the post‐synthetic metallation of MOFs, our approach is well‐fitted for controlling the positioning of dopants at an atomic level to gain more precise control over the band‐gap and electronic properties of the porous solid. Changes in the band‐gap are also rationalized with computational modelling and experimentally confirmed by photocatalytic H2 production.
Keywords:band-gap engineering  metal doping  metal–  organic frameworks  photocatalysis  titanium
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