Porous fluid sensor
An optical element includes a porous layer with a network of a plurality of interconnected voids. The porous layer is optically diffusive to at least one wavelength of light when the network of interconnected voids is substantially free of fluid. The porous layer of the optical element undergoes a detectable optical change upon fluid ingress into the network or egress from the network of interconnected voids.
1 . A fluid sensor, comprising:
a porous layer with a network of a plurality of interconnected voids, wherein:
the porous layer is a porous polymeric film; and
the porous layer is optically diffusive to at least one wavelength of light when the network is substantially free of fluid, and wherein the porous layer becomes transmissive to at least one wavelength of light upon fluid ingress into the network; and
a first non-porous polymeric film on a first major surface of the porous polymeric film, wherein the first non-porous polymeric film comprises a downconverting material that absorbs light and reemits a longer wavelength light.
2 . The fluid sensor of claim 1 , wherein at least some of the voids in the porous layer comprise particles therein.
3 . The fluid sensor of claim 1 , wherein a first local volume fraction of the plurality of interconnected voids proximate a first major surface of the porous layer is greater than a second local volume fraction of the plurality of interconnected voids proximate an opposed second major surface of the porous layer, and wherein the porous layer has a thickness of greater than 2 microns.
4 . The fluid sensor of claim 1 , wherein the porous polymeric film is on a substrate, and wherein the substrate comprises an arrangement of fluid channels.
5 . The fluid sensor of claim 1 , further comprising a second polymeric film different from the first non-porous polymeric film, wherein the second polymeric film is on a second major surface of the porous polymeric film.
6 . The fluid sensor of claim 5 , wherein the first non-porous polymeric film is transmissive to visible light and the second polymeric film is a light absorber.
7 . The fluid sensor of claim 5 , wherein the porous layer is on a surface of a lightguide.
8 . The fluid sensor of claim 7 , wherein the first non-porous polymeric film is transmissive to visible light, and a second major surface of the porous polymeric film is on the lightguide.
9 . The fluid sensor of claim 1 , wherein the porous layer is on a substrate, and wherein the substrate comprises an arrangement of fluid channels.
10 . The fluid sensor of claim 1 , further comprising an evaporative pathway connected to the fluid sensor.
11 . The fluid sensor of claim 10 , wherein the evaporative pathway comprises a vent.
12 . The fluid sensor of claim 1 , comprising at least one of a pattern, a symbol, a message, a color, a wavelength, or a machine readable code that becomes visible or detectable when a predetermined amount of the fluid is present in the network.
13 . The fluid sensor of claim 1 , comprising closure device comprising a body overlain by the fluid sensor forming a fluid chamber.