Sterilization indicator sensor with a sterilant-responsive switch
A sensor device. The sensor device includes a sterilant-responsive switch comprising: a circuit; a conductive polymer having a first state and a second state, and a polymeric binder; and wherein the sterilant-responsive switch connects the circuit in the first state and disconnects the circuit in the second state, and wherein the conductive polymer is capable of being converted from being in the first state to being in the second state when in contact with a sterilant.
1 . A sensor device comprising:
a sterilant-responsive switch comprising:
a circuit;
a conductive polymer having a first state and a second state, wherein the conductive polymer comprises a repeat unit of: aniline, acetylene, pyrrole, phenylene, phenylene vinylene, phenylene ethynylene, phenylene sulfide, fluorene, pyrene, azulene, naphthalene, carbazole, indole, thiophene, ethylene dioxythiophene, or combinations thereof, and
a polymeric binder configured to maintain the conductive polymer in a second state; and
wherein the sterilant-responsive switch connects the circuit in the first state and disconnects the circuit in the second state, and
wherein the conductive polymer is capable of being converted from being in the first state to being in the second state when in contact with a sterilant.
2 . The sensor device of claim 1 , wherein the conductive polymer changes from a first impedance to a second impedance when an environmental change receptor or the sterilant contacts the conductive polymer.
3 . The sensor device of claim 1 , wherein the conductive polymer comprises a repeat unit of aniline, pyrrole, or combinations thereof.
4 . The sensor device of claim 1 , further comprising a first conductive trace and a second conductive trace, each having a first end electrically coupled to the circuit and a second end.
5 . The sensor device of claim 4 , wherein the sterilant-responsive switch modifies an electrical connection between the first conductive trace and the second conductive trace in response to a sterilization process.
6 . The sensor device of claim 4 , wherein the first conductive trace and the second conductive trace comprise a metal electrode.
7 . The sensor device of claim 6 , wherein the metal electrode comprises a metal, wherein the oxidation potential of the metal is greater than the reduction potential of the conductive polymer.
8 . The sensor device of claim 6 , wherein the metal electrode comprises aluminum, iron, zinc, tungsten, molybdenum, tin, nickel, copper, or alloys thereof.
9 . The sensor device of claim 6 , upon exposure to an adequate environmental condition comprising a steam sterilant, the metal electrode reacts with the conductive polymer to change impedance of the conductive polymer.
10 . The sensor device of claim 1 , wherein the sterilant-responsive switch is configured to change impedance in response to an adequate sterilization process.
11 . The sensor device of claim 1 , wherein the circuit is an integrated circuit.
12 . The sensor device of claim 1 , wherein polymeric binder comprises a polyurethane, a polyvinyl butyral, a polyacrylate, polyvinyl acetate, polystyrene, polystyrene acrylate, a polyurea, a polyimide, an amide, an epoxy, a glycidyl-Si—Zr-containing solgel, a polyester, a phenoxy resin, a polysulfide, or mixtures thereof.
13 . A method, the method comprising:
providing the sensor device of claim 1 ;
exposing the sensor device to a sterilant in a sterilization process;
allowing the sterilant-responsive switch to react with the sterilant which changes the sterilant-responsive switch from the first state to the second state.
14 . The method of claim 13 , wherein the sterilant is at least 95% saturated steam and the adequate sterilization process is 134 degrees Celsius for 2 minutes or 121 degrees Celsius for 10 minutes.
15 . A system, the system comprising:
the sensor device of claim 1 ;
a memory element to store data captured by the sensor device; and
a sensing device configured to interrogate the sensor device.