Systems and methods for sensing using consumer electronic devices
Embodiments described herein generally relate to: sensing and/or authentication using luminescence imaging; diagnostic assays, systems, and related methods; temporal thermal sensing and related methods; and/or to emissive species, such as those excitable by white light, and related systems and methods.
1. A system, comprising:
a source of electromagnetic radiation associated with a consumer electronic device;
a sensor associated with the consumer electronic device;
an emissive species which produces a detectable signal in the presence of electromagnetic radiation produced by the source of electromagnetic radiation, the detectable signal detectable by the sensor, the detectable signal having one or more detectable delayed emissions having an emission time period of greater than or equal to 10 nanoseconds; and
an electronic hardware component associated with the consumer electronic device configured to generate a single image, the single image comprising a first portion of the detectable signal corresponding to a first portion of the emission time period, and the single image comprising a second portion of the detectable signal corresponding to a second portion of the emission time period different than the first portion of the emission time period.
2. A system as in claim 1 , wherein the detectable signal comprises one or more delayed emissions of greater than or equal to 10 nanoseconds.
3. A system as in claim 1 , wherein the source of electromagnetic radiation comprises an LED component.
4. A system as in claim 1 , further comprising a rolling shutter mechanism associated with the method.
5. A system as in claim 1 , wherein the emissive material absorbs light emitted from a smartphone.
6. A system as in claim 1 , wherein the emissive material absorbs light at a wavelength of 440 nm or higher.
7. A system as in claim 1 , wherein the detectable signal comprises subtractive color, reflected color, chemiluminescence, prompt-fluorescence, delayed-fluorescence, prompt-phosphorescence, or delayed-phosphorescence emission.
8. A system as in claim 1 , wherein the emissive material comprises a TADF emission.
9. A system as in claim 1 , wherein the emissive material comprises an organometallic compound.
10. A system as in claim 1 , wherein the emissive material comprises a metallorganic material.
11. A system as in claim 1 , wherein the emissive material comprises Europium complex.
12. A system as in claim 1 , wherein the emissive material comprises an organic molecule containing iodine or bromine atoms.
13. A system as in claim 1 , wherein the emissive material is electronically coupled to or connected to a heavy atom.
14. A system as in claim 1 , wherein the emissive material comprises metalloporphyrin.
15. A system as in claim 1 , wherein the emissive material is excited by a white light source.
16. A system as in claim 1 , wherein the emissive material is excited by an LED emitting between 440 and 700 nm.
17. A method, comprising:
using a consumer electronic device to determine an identity or characteristic of a chemical/biological species, wherein the consumer electronic device comprises a source of a spectrum of electromagnetic radiation;
exposing an emissive species to the spectrum of electromagnetic radiation such that the emissive species produces a detectable delayed emission having an emission time period of greater than or equal to 10 nanoseconds which corresponds to the identity or characteristic of the chemical/biological species and which is detectable by the consumer electronic device; and
generating a single image, the single image comprising a first portion of the detectable signal corresponding to a first portion of the emission time period, and the single image comprising a second portion of the detectable signal corresponding to a second portion of the emission time period different than the first portion of the emission time period.
18. A method as in claim 17 , wherein one or more emissive species are excited and a smartphone detects a steady-state photon emission event and a non-steady-state emission event or optionally a non-steady-state photon emission event.
19. A method as in claim 18 , wherein a first portion of the electromagnetic radiation comprises a wavelength of between 425 nm and 475 nm and wherein a second portion of the electromagnetic radiation comprises a wavelength of between 525 nm and 725 nm.
20. A method as in claim 17 , wherein at least one emission is selected from the group consisting of subtractive color, reflected/scattered color, chemiluminescence, prompt-fluorescence, delayed-fluorescence, prompt-phosphorescence, or delayed-phosphorescence.