Preparation of suspensions
Abstract
A method for preparing a suspension of LDH particles comprises the steps of preparing LDH precipitates by coprecipitation to form a mixture of LDH precipitates and solution; separating the LDH precipitates from the solution; washing the LDH precipitates to remove residual ions; mixing the LDH precipitates with water; and subjecting the mixture of LDH particles and water from step (d) to a hydrothermal treatment step by heating to a temperature of from greater than 80° C. to 150° C. for a period of about 1 hour to about 144 hours to form a well dispersed suspension of LDH particles in water.
Claims
exact text as granted — not AI-modified1 . A method for preparing a suspension of LDH particles comprising the steps of:
a) preparing LDH precipitates by coprecipitation to form a mixture of LDH precipitates and solution; b) separating the LDH precipitates from the solution; c) washing the LDH precipitates to remove residual ions; d ) mixing the LDH precipitates with water; and e) subjecting the mixture of LDH particles and water from step (d) to a hydrothermal treatment step by heating to a temperature of from greater than 80° C. to 150° C. for a period of about 1 hour to about 144 hours to form a well dispersed suspension of LDH particles in water.
2 . A method as claimed in claim 1 wherein the LDH precipitates and the solution formed in step (a) are left in contact with each other for a period not exceeding 30 minutes.
3 . A method as claimed in claim 1 wherein the LDH precipitates and the solution formed in step (a) are left in contact with each other for a period not exceeding 20 minutes.
4 . A method as claimed in claim 1 wherein the LDH precipitates and the solution formed in step (a) are left in contact with each other for a period not exceeding 10 minutes.
5 . A method as claimed in claim 1 wherein the LDH precipitates and the solution formed in step (a) are left in contact with each other for a period not exceeding 5 minutes.
6 . A method as claimed in claim 1 wherein the LDH precipitates and the solution formed in step (a) are left in contact with each other for a period not exceeding 1 minute.
7 . A method as claimed in claim 1 wherein the LDH precipitates and solution formed in step (a) are vigorously stirred.
8 . A method as claimed in claim 1 wherein the hydrothermal treating step is carried out whilst suppressing boiling.
9 . A method as claimed in claim 1 wherein in step (a) a mixed metal ion solution and an alkaline solution are rapidly mixed together.
10 . A method as claimed in claim 9 wherein the mixed metal ion solution and the alkaline solution are added together within a time period of less than 1 minute.
11 . A method as claimed in claim 1 wherein precipitation in step (a) takes place at a temperature ranging from room temperature up to about 50° C.
12 . A method as claimed in claim 1 wherein the LDH precipitates are washed one or more times with deionized water following separation from the solution.
13 . A method as claimed in claim 1 wherein the temperature in the hydrothermal treating step is within the range of from greater than 80° C. to 120° C.
14 . A method as claimed in claim 1 wherein the mixture of water and LDH precipitates is held at the elevated temperature for a period of from 2-72 hours in step (e).
15 . A method as claimed in claim 14 wherein the mixture of water and LDH precipitates is held at the elevated temperature for a period of from 4-48 hours.
16 . A method as claimed in claim 15 wherein the mixture of water and LDH precipitates is held at the elevated temperature for a period of from 4-24 hours.
17 . A method as claimed in claim 1 wherein the largest dimension of the particles in the suspension predominantly falls within the range of 20-400 nm, with the thickness of the particles predominantly falling within the range of 5-40 nm and wherein the particles show a particle size distribution of ±20% around the average size.
18 . A method as claimed in claim 1 wherein the largest dimension of the particles in the suspension predominantly falls within the range of 40-300 nm.
19 . A method as claimed in claim 1 wherein the suspension contains up to 10% w/w LDH particles.
20 . A method as claimed in claim 1 wherein the suspension contains up to 5% w/w LDH particles.
21 . A method as claimed in claim 1 wherein the suspension contains up to about 1% w/w LDH particles.
22 . A method as claimed in claim 1 wherein the suspension contains less than 1% w/w LDH particles.
23 . A method as claimed in claim 1 further comprising the step of removing at least some of the water from the suspension to concentrate the particles to form a more concentrated suspension.
24 . A method for forming LDH particles comprising forming a suspension as claimed in claim 1 and separating the LDH particles from the suspension.Join the waitlist — get patent alerts
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