Modelling a linker mix‐and‐match approach for controlling the optical excitation gaps and band alignment of zeolitic imidazolate frameworks

R Grau‐Crespo, A Aziz, AW Collins… - Angewandte …, 2016 - Wiley Online Library
Tuning the electronic structure of metal–organic frameworks is the key to extending their
functionality to the photocatalytic conversion of absorbed gases. Herein we discuss how the …

Modelling a Linker Mix‐and‐Match Approach for Controlling the Optical Excitation Gaps and Band Alignment of Zeolitic Imidazolate Frameworks

R Grau‐Crespo, A Aziz, AW Collins… - Angewandte …, 2016 - infona.pl
Tuning the electronic structure of metal–organic frameworks is the key to extending their
functionality to the photocatalytic conversion of absorbed gases. Herein we discuss how the …

Modelling a Linker Mix-and-Match Approach for Controlling the Optical Excitation Gaps and Band Alignment of Zeolitic Imidazolate Frameworks

R Grau-Crespo, A Aziz, AW Collins… - Angewandte …, 2016 - tohoku.elsevierpure.com
Tuning the electronic structure of metal–organic frameworks is the key to extending their
functionality to the photocatalytic conversion of absorbed gases. Herein we discuss how the …

Modelling a Linker Mix-and-Match Approach for Controlling the Optical Excitation Gaps and Band Alignment of Zeolitic Imidazolate Frameworks

R Grau-Crespo, A Aziz, AW Collins… - … (International ed. in …, 2016 - pubmed.ncbi.nlm.nih.gov
Tuning the electronic structure of metal-organic frameworks is the key to extending their
functionality to the photocatalytic conversion of absorbed gases. Herein we discuss how the …

Modelling a Linker Mix-and-Match Approach for Controlling the Optical Excitation Gaps and Band Alignment of Zeolitic Imidazolate Frameworks.

R Grau‐Crespo, A Aziz, AW Collins… - Angewandte …, 2016 - search.ebscohost.com
Tuning the electronic structure of metal-organic frameworks is the key to extending their
functionality to the photocatalytic conversion of absorbed gases. Herein we discuss how the …

[PDF][PDF] Modelling a Linker Mix-and-Match Approach for Controlling the Optical Excitation Gaps and Band Alignment of Zeolitic Imidazolate Frameworks

R Grau-Crespo, A Aziz, AW Collins, R Crespo-Otero… - cyberleninka.org
Tuning the electronic structure of metal–organic frameworks is the key to extending their
functionality to the photocatalytic conversion of absorbed gases. Herein we discuss how the …

[PDF][PDF] Modelling a Linker Mix-and-Match Approach for Controlling the Optical Excitation Gaps and Band Alignment of Zeolitic Imidazolate Frameworks

R Grau-Crespo, A Aziz, AW Collins, R Crespo-Otero… - academia.edu
Tuning the electronic structure of metal–organic frameworks is the key to extending their
functionality to the photocatalytic conversion of absorbed gases. Herein we discuss how the …

[引用][C] Modelling a Linker Mix-and-Match Approach for Controlling the Optical Excitation Gaps and Band Alignment of Zeolitic Imidazolate Frameworks

R Grau-Crespo, A Aziz, AW Collins… - Angewandte …, 2016 - ui.adsabs.harvard.edu
Modelling a Linker Mix-and-Match Approach for Controlling the Optical Excitation Gaps and Band
Alignment of Zeolitic Imidazolate Frameworks - NASA/ADS Now on home page ads icon ads …

[PDF][PDF] Modelling a Linker Mix-and-Match Approach for Controlling the Optical Excitation Gaps and Band Alignment of Zeolitic Imidazolate Frameworks

R Grau-Crespo, A Aziz, AW Collins… - Angew. Chem. Int …, 2016 - researchgate.net
Tuning the electronic structure of metal–organic frameworks is the key to extending their
functionality to the photocatalytic conversion of absorbed gases. Herein we discuss how the …

[HTML][HTML] Modelling a Linker Mix‐and‐Match Approach for Controlling the Optical Excitation Gaps and Band Alignment of Zeolitic Imidazolate Frameworks

R Grau‐Crespo, A Aziz, AW Collins… - … (International Ed. in …, 2016 - ncbi.nlm.nih.gov
Tuning the electronic structure of metal–organic frameworks is the key to extending their
functionality to the photocatalytic conversion of absorbed gases. Herein we discuss how the …