[미국특허]
Organic/inorganic hybrid hydrogel and manufacturing method therefor
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
C08F-002/22
C08K-009/00
출원번호
US-0712995
(2003-11-17)
우선권정보
JP-0158276 (2000-05-29)
발명자
/ 주소
Haraguchi, Kazutoshi
출원인 / 주소
Kawamura Institute of Chemical Research
대리인 / 주소
Armstrong, Kratz, Quintos, Hanson &
인용정보
피인용 횟수 :
2인용 특허 :
10
초록▼
The present invention provides a novel organic/inorganic hybrid hydrogel which is superior in homogeneity, transparency, mechanical properties, and in swelling and shrinking properties, a manufacturing method therefor, and a dry body of the organic/inorganic hybrid hydrogel which is obtained by remo
The present invention provides a novel organic/inorganic hybrid hydrogel which is superior in homogeneity, transparency, mechanical properties, and in swelling and shrinking properties, a manufacturing method therefor, and a dry body of the organic/inorganic hybrid hydrogel which is obtained by removing water from said hydrogel. The organic/inorganic hybrid hydrogel comprises a water soluble polymer (A), a water swelling clay mineral (B) which can be homogeneously dispersed in water, and water (C), and water (C) is included in a three-dimensional network formed by (A) and (B).
대표청구항▼
1. A manufacturing method for an organic/inorganic hybrid hydrogel comprising the steps of:preparing a homogeneous solution containing (A′) which corresponds to a monomer of a water soluble polymer (A), a water swelling clay mineral (B) which can be homogeneously dispersed in water, and water (C); a
1. A manufacturing method for an organic/inorganic hybrid hydrogel comprising the steps of:preparing a homogeneous solution containing (A′) which corresponds to a monomer of a water soluble polymer (A), a water swelling clay mineral (B) which can be homogeneously dispersed in water, and water (C); and polymerizing the monomer (A′) under the presence of the clay mineral (B) such that after polymerization the organic/inorganic hybrid hydrogel has a tensile load at break of more than 0.1N, a tensile elongation at break of more than 100%, and a load at a tensile elongation of 100% is more than 0.01N in the case of using said organic/inorganic hybrid hydrogel, having a water content defined by {C/(A+B)} is 600 to 1000 weight %, for a sample which has an initial sectional area of 0.237 cm2. 2. A manufacturing method for an organic/inorganic hybrid hydrogel according to claim 1, wherein said homogeneous solution containing (A′), (B), and (C) further comprises an organic solvent which is miscible with water.3. A manufacturing method for an organic/inorganic hybrid hydrogel according to claim 1, wherein the weight ratio of the water swelling clay mineral (B) to the monomer (A′) of the water soluble polymer (A) is within a range of 0.01 to 10.4. A manufacturing method for an organic/inorganic hybrid hydrogel according to claim 1, wherein said water soluble polymer (A) includes polymers obtained by polymerization of acrylamido compounds and/or methacrylamido compounds.5. A manufacturing method for an organic/inorganic hybrid hydrogel comprising the steps of:preparing a homogeneous solution containing (A′) which corresponds to a monomer of a water soluble polymer (A), a water swelling clay mineral (B) which can be homogeneously dispersed in water, and water (C); and polymerizing the monomer (A′) under the presence of the clay mineral (B), wherein said organic/inorganic hybrid hydrogel has a critical temperature (Tc), at which the organic/inorganic hybrid hydrogel changes reversibly between the transparent and swollen state at a lower temperature of the critical temperature and an opaque and shrunken state at a higher temperature of the critical temperature. 6. A manufacturing method for an organic/inorganic hybrid hydrogel according to claim 5, wherein the volume ratio of said organic/inorganic hybrid hydrogel in water below the critical temperature to that above the critical temperature is equal to 10 or more.7. A manufacturing method for an organic/inorganic hybrid hydrogel comprising the steps of:preparing a homogeneous solution containing (A′) which corresponds to a monomer of a water soluble polymer (A), a water swelling clay mineral (B) which can be homogeneously dispersed in water, and water (C); and polymerizing the monomer (A′) under the presence of the clay mineral (B), wherein the water content defined by {Cmax/(A+B)} of said organic/inorganic hybrid hydrogel in the equilibrium swollen state is equal to or more than 2000 weight %. 8. A manufacturing method for an organic/inorganic hybrid hydrogel comprising the steps of:preparing a homogeneous solution containing (A′) which corresponds to a monomer of a water soluble polymer (A), a water swelling clay mineral (B) which can be homogeneously dispersed in water, and water (C); and polymerizing the monomer (A′) under the presence of the clay mineral (B), wherein a total transmission in the visible range of said organic/inorganic hybrid hydrogel is more than 80%, when a 25 mm thick sample of said organic/inorganic hydrogel containing water (C) at 10 times (weight basis) higher than the content of an polymer (A) is used.
Kajita Laura (St. Charles IL), Method of improving the contaminant resistance of a smectite clay by rewetting and impregnating the clay with a water-so.
Libor Oszkr (Budapest HUX) Nagy Gbor (Budapest HUX) Szkely Tams (Budapest HUX), Process for the preparation of clay mineral-containing gels with stabilized structure and reversible water absorption ab.
Sassi Alexander P. ; Lin Shi ; Alonso-Amigo M. Goretty ; Hooper Herbert H., Thermoreversible hydrogels comprising linear copolymers and their use in electrophoresis.
Tsipursky Semeon ; Dolinko Vladimir ; Psihogios Vasiliki ; Beall Gary W., Viscous carrier compositions, including gels, formed with an organic liquid carrier, a layered material: polymer complex, and a di-, and/or tri-valent cation.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.