Claims
- 1. In a method of making an element for the analysis or transport of a liquid, said element containing a support bearing a particulate structure, said method comprising:
- (a) forming in a liquid carrier a stable dispersion of
- (i) a plurality of heat-stable, organo-polymeric particles non-swellable in and impermeable to said liquid under analysis, said particles having a particle size of from about 1 to 200 microns, and
- (ii) an adhesive, in an amount less than 10 percent by weight of said particles, comprising an organic polymer, said adhesive polymer being different from that of said particles and being insoluble in said liquid under analysis; and
- (b) applying said dispersion to said support and removing said liquid carrier at a temperature below the heat-stability temperature of said particles to concentrate said adhesive at contiguous surface areas of adjacent particles and bond said particles, in situ, on said support into a coherent, three-dimensional lattice which is non-swellable in said liquid under analysis, has interconnected void spaces among particles of said lattice to provide transport of said liquid under analysis, and has a void volume of from about 25 to 80 percent.
- 2. In a method of making an element for the analysis or transport of an aqueous liquid, said element containing a support bearing a particulate structure, said method comprising:
- (a) forming in a liquid carrier a stable dispersion of
- (i) a plurality of heat-stable, organo-polymeric particles non-swellable in and impermeable to said liquid under analysis, said particles having a particle size of from about 1 to 200 microns, and
- (ii) an adhesive latex, in an amount less than 10 percent by weight of said particles, comprising an organic polymer, said adhesive polymer being different from that of said particles, being insoluble in said liquid under analysis, and having a glass transition temperature less than that of said particles; and
- (b) applying said dispersion to said support and removing said liquid carrier at a temperature above the glass transition temperature of said adhesive polymer but below the heat-stability temperature of said particles to concentrate said adhesive at contiguous surface areas of adjacent particles and bond said particles, in situ, on said support into a coherent, three-dimensional lattice which is non-swellable in said liquid under analysis, has interconnected void spaces among particles of said lattice to provide transport of said liquid under analysis, and has a void volume of from about 25 to 80 percent.
- 3. A method of making an element as defined in claim 2 wherein a surfactant is added to said liquid carrier during step (a) to facilitate formation of said stable dispersion.
- 4. A method of making an element as defined in claim 2 wherein formation of said stable dispersion in step (a) is facilitated by matching the specific gravity of said heat-stable particles to that of said liquid carrier.
- 5. A method of making an element as defined in claim 2 wherein formation of said stable dispersion in step (a) is facilitated by matching the specific gravity of said heat-stable particles and that of said liquid carrier to a value within the range of from about 0.7 to 1.3.
- 6. A method of making an element as defined in claim 2 wherein formation of said stable dispersion in step (a) comprises:
- preparing said adhesive as a latex, said latex comprising said adhesive polymer dispersed as a finely-divided discontinuous phase in an aqueous liquid vehicle as a continuous phase; and
- admixing said heat-stable particles with said latex, said aqueous liquid vehicle of said latex serving as at least a portion of the liquid carrier for said stable dispersion.
Parent Case Info
This is a division of application Ser. No. 193,508, filed October 2, 1980 which is a division of application Ser. No. 973,669 now U.S. Pat. No. 4,258,001.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
3992158 |
Millkan |
Nov 1976 |
|
Foreign Referenced Citations (1)
Number |
Date |
Country |
2322167 |
Mar 1977 |
FRX |
Divisions (2)
|
Number |
Date |
Country |
Parent |
193508 |
Oct 1980 |
|
Parent |
973669 |
Dec 1978 |
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