Rugged nanoparticle tracers for mass tracking in explosive events

Author:

Hubbard LanceORCID,Sumner Ryan,Liezers Martin,Cell Trevor,Reed Clara,Uhnak Nicolas,Allen Caleb,Berry Brittney,Currah Hugh,Fuller Erin,Kinney Erin,Smith Nathaniel,Foxe Michael,Carman April

Abstract

AbstractTracing the flow of solid matter during an explosion requires a rugged tag that can be measured by a unique identifiable signature. Silica-covered semiconductor quantum dots (QDs) provide a unique and tunable photoluminescent signature that emits from within a sacrificial outer layer. Five types of silica-covered zinc sulfide QDs were synthesized and covalently bound to commercial luminescent powders. The combination of five dots and five powders enables a matrix of 25 unique tags. The tracers are shown to be tolerant of environments associated with chemical explosives and provides a unique tag to evaluate debris fields.

Publisher

Springer Science and Business Media LLC

Subject

General Materials Science

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