Claims
- 1. A gas detector comprising:
- a semiconductor support which is substantially nonreactive to a gas to be detected,
- a surface additive means which is a catalyst deposited solely on said semiconductor support surface and in pores in said surface, for exchanging electrons with said semiconductor in the presence of said gas to be detected to change the conductivity of said semiconductor, and
- means for detecting the change in conductivity of said semiconductor support.
- 2. A gas detector as recited in claim 1 wherein said semiconductor support is NiO:Li and said surface additive means is sulfanilic acid.
- 3. A gas detector as recited in claim 1 wherein said semiconductor support is titanium dioxide and said surface additive means is vanadium pentoxide.
- 4. Apparatus for detecting a predetermined gas comprising:
- a compressed pellet of semiconductor powder particles which are not reactive to said gas impregnated with a surface additive, which is a catalyst which is deposited solely on the surface and in pores of said powder particles, which in the presence of said gas exchanges electrons with said semiconductor powder particles, and
- means for measuring the change of conductivity of said compressed pellet.
- 5. Apparatus as recited in claim 4 wherein said apparatus includes
- means for heating said compressed pellet and gas to be detected to a predetermined temperature.
- 6. A method of making a detector for a predetermined gas comprising:
- depositing a surface additive which is a catalyst solely over the surface and in pores of powder particles of a semiconductor material which is not reactive with said gas, which surface additive, in the presence of said gas, can exchange electrons with said semiconductor support,
- compressing said powder particles upon which said surface additive has been deposited to form a pellet, and
- connecting a conductivity measuring means to said pellet.
ORIGIN OF THE INVENTION
The invention described herein was made in the course of work under a contract from the U.S. Army Research Office.
US Referenced Citations (5)