Patent classifications
C08L33/00
Material and method for producing cell receiving scaffold
A printable composition for the manufacture of cell-receiving scaffolds comprising about 0.3 wt % to about 3.0 wt % of one or more collagens; about 5.0 wt % to about 40.0 wt % of one or more monomers; about 0.5 wt % to about 2.0 wt % of a photo initiator; and 0 wt % to about 75 wt % of a vehicle comprising a protic solvent, by weight of the printable composition; wherein the printable composition has a resolution of about 100 microns or less when printed, a photo speed (Dp/Ec) of about 0.1-5 mm (Dp) and about 10-100 mJ/cm.sup.2 (Ec) when printed, and a green strength of at least about 5 kPa after drying. The present technology further includes methods of manufacturing a three-dimensional cell-receiving scaffold using the printable composition.
Material and method for producing cell receiving scaffold
A printable composition for the manufacture of cell-receiving scaffolds comprising about 0.3 wt % to about 3.0 wt % of one or more collagens; about 5.0 wt % to about 40.0 wt % of one or more monomers; about 0.5 wt % to about 2.0 wt % of a photo initiator; and 0 wt % to about 75 wt % of a vehicle comprising a protic solvent, by weight of the printable composition; wherein the printable composition has a resolution of about 100 microns or less when printed, a photo speed (Dp/Ec) of about 0.1-5 mm (Dp) and about 10-100 mJ/cm.sup.2 (Ec) when printed, and a green strength of at least about 5 kPa after drying. The present technology further includes methods of manufacturing a three-dimensional cell-receiving scaffold using the printable composition.
NOVEL NON-PHTHALATE PLASTICIZER BLENDS FOR POLY(VINYL CHLORIDE) RESIN COMPOSITIONS
The present application discloses a novel plasticizer formulation comprising bis(2-(2-butoxyethoxy)ethyl) terephthalate, bis(2-ethylhexyl) terephthalate, and optionally tris(2-ethylhexyl) benzene-1,2,4-tricarboxylate. The plasticizer formulation is suitable medium to high temperature applications such as wire and cable insulation and jacketing.
NOVEL NON-PHTHALATE PLASTICIZER BLENDS FOR POLY(VINYL CHLORIDE) RESIN COMPOSITIONS
The present application discloses a novel plasticizer formulation comprising bis(2-(2-butoxyethoxy)ethyl) terephthalate, bis(2-ethylhexyl) terephthalate, and optionally tris(2-ethylhexyl) benzene-1,2,4-tricarboxylate. The plasticizer formulation is suitable medium to high temperature applications such as wire and cable insulation and jacketing.
HIGH SOLVATING MIXED TEREPHTHALATE ESTER PLASTICIZER COMPOSITIONS
The present application discloses plasticizer compositions comprising: (I) a compound of formula I: wherein R.sup.1, R.sup.2, and n are defined herein. The application also discloses resin compositions comprising the compound of formula I.
##STR00001##
HIGH SOLVATING MIXED TEREPHTHALATE ESTER PLASTICIZER COMPOSITIONS
The present application discloses plasticizer compositions comprising: (I) a compound of formula I: wherein R.sup.1, R.sup.2, and n are defined herein. The application also discloses resin compositions comprising the compound of formula I.
##STR00001##
ZIRCONIUM PHOSPHATE PARTICLES, BASIC GAS DEODORANT USING THE SAME, AND PRODUCTION METHOD THEREOF
Provided are zirconium phosphate particles, obtained by bringing α-zirconium phosphate particles into contact with a basic liquid having a pH of 9 or higher and then further bringing the particles into contact with an acidic liquid having a pH of 6 or lower, or zirconium phosphate particles, in which, after leaving for 10 minutes from putting 10 mg of zirconium phosphate particles and 3 L of air that contains 1,000 ppm of an ammonia gas into a test bag at normal temperature and normal pressure, an ammonia gas reduction rate within the test bag that contains the zirconium phosphate particles is 50% or more.
SPECTACLE LENS
One embodiment according to the present disclosure relates to a spectacle lens containing a compound having a maximum absorption wavelength of 350 nm or more and 365 nm or less and a molar extinction coefficient of 20,000 l/mol.Math.cm or more.
SPECTACLE LENS
One embodiment according to the present disclosure relates to a spectacle lens containing a compound having a maximum absorption wavelength of 350 nm or more and 365 nm or less and a molar extinction coefficient of 20,000 l/mol.Math.cm or more.
One pack-type dental adhesive composition
To provide one liquid type dental adhesive composition that exhibits excellent adhesive property to glass ceramics, oxide-base ceramics and tooth substance, and has excellent storage stability, which are contrary features. One liquid type dental adhesive composition contains (a) silane coupling agent represented by general formula (1), (b) acidic group-containing polymerizable monomer, (c) volatile organic solvent, and (d) water. ##STR00001##
(In the formula, R.sup.1 represents an organic group having at least one functional group selected from the group consisting of a (meth)acryloyl group, a vinyl group and an epoxy group, R.sup.2 represents C4-C8 linear alkyl group, R.sup.3 represents C1-C8 alkyl group, and n is integer selected from 1 to 3.)