Applicant's present invention is a composite scintillator for neutron
detection comprising a matrix material fabricated from an inorganic
sol-gel precursor solution homogeneously doped with a liquid
scintillating material and a neutron absorbing material. The neutron
absorbing material yields at least one of an electron, a proton, a
triton, an alpha particle or a fission fragment when the neutron
absorbing material absorbs a neutron. The composite scintillator further
comprises a liquid scintillating material in a self-assembled micelle
formation homogeneously doped in the matrix material through the
formation of surfactant-silica composites. The scintillating material is
provided to scintillate when traversed by at least one of an electron, a
proton, a triton, an alpha particle or a fission fragment. The
scintillating material is configured such that the matrix material
surrounds the micelle formation of the scintillating material. The
composite scintillator is fabricated and applied as a thin film on
substrate surfaces, a coating on optical fibers or as a glass material.