AbstractThere is a strong demand for a fast and reliable detection of explosives because of their use in most terrorist attacks. Chemical sensors, especially fluorescent ones, seem to fill the need in terms of reliability, cost and handling ability. In this paper, the detection of 2,4,6-trinitrotoluene (TNT) and 1,3,5-trinitro-1,3,5-triazacyclohexane (RDX or hexogen) using a heating device of the particles was studied. Two fluorescent sensitive materials were compared: diimine [1] and polycarbosilane functionalised with pyrene moieties at 50% (PCS-Py-50%) [2]. Both materials were shown to be sensitive to TNT and RDX vapours. The PCS-Py-50% material was the most promising for the detection of RDX because of a higher kinetics of interaction
New fluorescent probes have been tested for their ability to detect nitramine (RDX) and nitroaromati...
Organic semiconductors can be applied as ultra-sensitive fluorescent sensors for detecting trace vap...
The Ph.D. project aims at developing novel fluorescent nanomaterials for fast, sensitive, selective,...
AbstractThere is a strong demand for a fast and reliable detection of explosives because of their us...
International audienceFor the development of fluorescent sensors, one of the key points is choosing ...
A sensing system for explosives is demonstrated. The sensor is based on a layered structure of appro...
International audienceThis paper describes a system for the detection of nitroaromatic explosives co...
Funding: This research was funded by the Commonwealth Scholarships Commision, and the NATO Science f...
The article offers a comparison of the sensitivities for vapour trace detection of Trinitrotoluene (...
Face à la menace croissante du terrorisme, il est essentiel de mettre en place des mesures de préca...
Over the past decade, the use of improvised explosive devices (IEDs) has increased, domestically and...
AbstractIn order to response for security purposes, many developments have been developed for counte...
Abstract: There are many kinds of explosives, and their detection methods vary. Nitroaromatic compou...
The concentration of the chemical vapors emanating from landmines is very low. The equilibrium vapor...
Optical techniques for the detection of explosives are receiving increasing interest due to potentia...
New fluorescent probes have been tested for their ability to detect nitramine (RDX) and nitroaromati...
Organic semiconductors can be applied as ultra-sensitive fluorescent sensors for detecting trace vap...
The Ph.D. project aims at developing novel fluorescent nanomaterials for fast, sensitive, selective,...
AbstractThere is a strong demand for a fast and reliable detection of explosives because of their us...
International audienceFor the development of fluorescent sensors, one of the key points is choosing ...
A sensing system for explosives is demonstrated. The sensor is based on a layered structure of appro...
International audienceThis paper describes a system for the detection of nitroaromatic explosives co...
Funding: This research was funded by the Commonwealth Scholarships Commision, and the NATO Science f...
The article offers a comparison of the sensitivities for vapour trace detection of Trinitrotoluene (...
Face à la menace croissante du terrorisme, il est essentiel de mettre en place des mesures de préca...
Over the past decade, the use of improvised explosive devices (IEDs) has increased, domestically and...
AbstractIn order to response for security purposes, many developments have been developed for counte...
Abstract: There are many kinds of explosives, and their detection methods vary. Nitroaromatic compou...
The concentration of the chemical vapors emanating from landmines is very low. The equilibrium vapor...
Optical techniques for the detection of explosives are receiving increasing interest due to potentia...
New fluorescent probes have been tested for their ability to detect nitramine (RDX) and nitroaromati...
Organic semiconductors can be applied as ultra-sensitive fluorescent sensors for detecting trace vap...
The Ph.D. project aims at developing novel fluorescent nanomaterials for fast, sensitive, selective,...