Metal–organic frameworks (MOFs) have shown great promise for sensing of dangerous chemicals, including environmental toxins, nerve agents, and explosives. However, challenges remain, such as the sensing of larger analytes and the discrimination between similar analytes at different concentrations. Herein, we present the synthesis and development of a new, large-pore MOF for explosives sensing and demonstrate its excellent sensitivity against a range of relevant explosive compounds including trinitrotoluene and pentaerythritol tetranitrate. We have developed an improved, thorough methodology to eliminate common sources of error in our sensing protocol. We then combine this new MOF with two others as part of a three-MOF array for luminescent ...
Detection of trace amounts of explosive materials is significantly important for security concerns a...
A new strategy has been developed for the effective detection of high explosives in vapor phase by f...
Highly luminescent micrometre-sized fine particles of a Zn(II) metal-organic framework (MOF) of a ne...
Metal–organic frameworks (MOFs) have shown great promise for sensing of dangerous chemicals, includi...
Metal–organic frameworks (MOFs) have shown great promise for sensing of dangerous chemicals, includi...
Metal–organic frameworks (MOFs) have shown great promise for sensing of dangerous chemicals, includi...
The threat of terrorism-related explosive attacks is substantial. Thus, the successful detection of ...
Two fluorescent metal–organic frameworks (MOFs) [Zn(dcbpy)(DMF)]·DMF and [Dy(dcbpy)(DMF)2(NO3)] (dcb...
An array comprising four Si µ -cantilevers coated with nanoporous functionalized ETS-10 crystals sub...
Due to the increased terrorist activity worldwide and the use of modern bombs in those attacks, the ...
The sensing and differentiation of explosive molecules is key for both security and environmental mo...
Rural populations in Colombia are significantly affected by anti-personnel mines used by revolutiona...
By incorporating a cationic dye within a metal–organic framework (MOF) through an ion-exchange proce...
The sensing and differentiation of explosive molecules is key for both security and environmental mo...
Detection of trace amounts of explosive materials is significantly important for security concerns a...
Detection of trace amounts of explosive materials is significantly important for security concerns a...
A new strategy has been developed for the effective detection of high explosives in vapor phase by f...
Highly luminescent micrometre-sized fine particles of a Zn(II) metal-organic framework (MOF) of a ne...
Metal–organic frameworks (MOFs) have shown great promise for sensing of dangerous chemicals, includi...
Metal–organic frameworks (MOFs) have shown great promise for sensing of dangerous chemicals, includi...
Metal–organic frameworks (MOFs) have shown great promise for sensing of dangerous chemicals, includi...
The threat of terrorism-related explosive attacks is substantial. Thus, the successful detection of ...
Two fluorescent metal–organic frameworks (MOFs) [Zn(dcbpy)(DMF)]·DMF and [Dy(dcbpy)(DMF)2(NO3)] (dcb...
An array comprising four Si µ -cantilevers coated with nanoporous functionalized ETS-10 crystals sub...
Due to the increased terrorist activity worldwide and the use of modern bombs in those attacks, the ...
The sensing and differentiation of explosive molecules is key for both security and environmental mo...
Rural populations in Colombia are significantly affected by anti-personnel mines used by revolutiona...
By incorporating a cationic dye within a metal–organic framework (MOF) through an ion-exchange proce...
The sensing and differentiation of explosive molecules is key for both security and environmental mo...
Detection of trace amounts of explosive materials is significantly important for security concerns a...
Detection of trace amounts of explosive materials is significantly important for security concerns a...
A new strategy has been developed for the effective detection of high explosives in vapor phase by f...
Highly luminescent micrometre-sized fine particles of a Zn(II) metal-organic framework (MOF) of a ne...