Hydrogel and uses thereof as a substrate for growing plants
A hydrogel includes a cross-linked polymer selected from the group consisting of polyacrylic acid, polyacrylamide and combinations thereof, the hydrogel including cross-links selected from residues of at least one difunctional acrylic material selected from the group consisting of N,N-methylene bis acrylamide (MBA), tetraethylene glycol diacrylate (TTEGDA) and combinations thereof. Further provided are methods of growing a plant using the hydrogel as a substrate.
1. A hydrogel comprising a cross-linked polymer comprising polyacrylic acid and hydroxy ethyl acrylate (HEA) at a weight ratio of 2:1-4:1 polyacrylic acid to HEA, wherein the hydrogel comprises cross-links formed from residues of N,N-methylene bis acrylamide (MBA) and tetraethylene glycol diacrylate (TTEGDA).
2. The hydrogel of claim 1 , wherein a ratio of said MBA to said TTEGDA is in the range of from about 10:1 to about 1:10.
3. The hydrogel of claim 1 , further comprising a non-crosslinked additive.
4. The hydrogel of claim 3 , wherein said non-crosslinked additive is a macromolecule selected from the group consisting of: polycaprolactone, polyvinylalcohol (PVA), polysaccharides, and combinations thereof.
5. The hydrogel of claim 4 , wherein said polysaccharide is selected from the group consisting of: dextran, alginate, agarose, chitosan, hyaluronic acid, starch, hydroxypropyl cellulose (HPC), carboxymethyl cellulose (CMC), k-carrageenan, i-carrageenan, and combinations thereof.
6. The hydrogel of claim 3 , wherein said non-crosslinked additive is selected from the group consisting of: PVA, CMC, and combinations thereof.
7. The hydrogel of claim 4 , wherein said polysaccharide is selected from the group consisting of: alginate methacrylate, sodium salt of alginic acid, glycol chitosan methacrylate, hyaluronic acid methacrylate, glycol chitosan methacrylate, and combinations thereof.
8. The hydrogel of claim 1 , wherein said cross-linked polymer further comprises an acid neutralizer comprising NaOH.
9. The hydrogel of claim 1 , further comprising a polymerization initiator.
10. The hydrogel of claim 9 , wherein said polymerization initiator is sodium persulfate (SPS).
11. The hydrogel of claim 1 , comprising polyacrylic acid, a mixture of MBA and TTEGDA, NaOH, HEA, CMC and SPS.
12. The hydrogel of claim 1 , having a degree of crosslinking in the range of from 0.4 to 4.
13. The hydrogel of claim 1 , further comprising an acid neutralizer comprising KOH.
14. The hydrogel of claim 6 , wherein said non-crosslinked additive comprises CMC having a molecular weight in the range of from 90 kDa to 1,000 kDa.
15. The hydrogel of claim 9 , wherein said polymerization initiator comprises alight initiator, optionally selected from the group consisting of 2,2-Dimethoxy-2-phenylacetophenone, lithium phenyl-2,4,6-trimethylbenzoylphosphinate, Igracure® photoinitiators, and combinations thereof.
16. A method for the preparation of a hydrogel, comprising:
(a) combining the following components in water to provide an aqueous hydrogel precursor solution: (i) carboxymethyl cellulose (CMC), (ii) acrylic acid, (iii) hydroxy ethyl acrylate (HEA), (iv) NaOH, (v) N,N-methylene bis acrylamide (MBA) and tetraethylene glycol diacrylate (TTEGDA), and (vi) sodium persulfate (SPS), wherein the acrylic acid and HEA are at a weight ratio of 2:1-4:1 acrylic acid to HEA; and
(b) heating said hydrogel precursor solution whereby polymerization and crosslinking of said acrylic acid occurs to provide said hydrogel.
17. The method of claim 16 , comprising:
(a) providing said CMC as a first aqueous solution;
(b) providing said acrylic acid as a second aqueous solution;
(c) mixing said first aqueous solution and said second aqueous solution to form a third aqueous solution; and
(d) adding the following components to said third aqueous solution to provide said hydrogel precursor solution: (I) HEA, (II) NaOH, (III) MBA and TTEGDA, (IV) SPS.
18. A method for growing a plant, comprising:
(a) providing a hydrogel as a growth medium for said plant, wherein the hydrogel comprises a cross-linked polymer comprising polyacrylic acid and hydroxy ethyl acrylate (HEA) at a weight ratio of 2:1-4:1 polyacrylic acid to HEA, and the hydrogel comprises cross-links formed from residues of N,N-methylene bis acrylamide (MBA) and tetraethylene glycol diacrylate (TTEGDA);
(b) placing said plant in said growth medium in the absence of soil; and
(c) allowing said plant to grow in said growth medium in the absence of soil.