Compositions containing thermally-induced self-assembly of nonionic surfactants and their application in smart glass technologies
The present subject matter relates generally to the use of thermally induced self-assembly of surfactants, such as poly(ethylene oxide)-poly(propylene oxide)-poly(ethylene oxide) or 4-octylphenol polyethoxylate, to vary the transparency or opacity of a composition containing the same. The compositions of the present subject matter can be used in smart window technologies.
1. A method of preparing an apparatus for controlling transparency of a window, wall or roof comprising:
preparing a hydrogel membrane composition having a variable opacity and an opaque-transparent transition temperature (OTTT), the hydrogel membrane composition consisting of:
a. a thermally induced self-assembly surfactant consisting of poly(ethylene oxide)-poly(propylene oxide)-poly(ethylene oxide) (EPE), wherein the EPE is in an amount of 0.1-2.0 w/v % of the hydrogel membrane composition;
b. sodium dodecyl sulfate as a modifier, wherein the sodium dodecyl sulfate is in an amount of 0.1-0.7 w/v % of the hydrogel membrane composition;
c. a liquid carrier; and
d. a hydrogel base material consisting of agarose, wherein the agarose is in an amount of 0.1-2.0 w/v % of the hydrogel membrane composition;
positioning at least two transparent panes and forming a void between the panes; and
positioning the hydrogel membrane composition within the void between the panes thereby forming the apparatus for controlling transparency of a window, wall or roof,
wherein the OTTT of the hydrogel membrane composition is adjustable by maintaining the ratio of modifier to EPE at 1-7 to 10 within the hydrogel membrane composition and the hydrogel membrane composition becomes opaque at or above the OTTT.