Abstract:
The present invention relates to processes utilizing ionic liquids for the dissolution of various polymers and/or copolymers, the formation of resins and blends, and the reconstitution of polymer and/or copolymer solutions, and the dissolution and blending of "functional additives" and/or various polymers and/or copolymers to form advanced composite materials.
Abstract:
Disclosed are composites comprising regenerated cellulose, a first active substance, a second active substance, and a linker. Methods for preparing the composites that involve the use of ionic liquids are also disclosed. Articles prepared from the disclosed composites and further disclosed.
Abstract:
A temperature sensor (10) having a capillary tube or stem (12) , sealed at both ends, with a thin bore (14) defined therein is applied to the measurement of temperatures having a range of about 100° to +400° Centigrade. A bub (16) comprising a liquid reservoir, is provided at one end of the capillary tube (12) , in liquid communication with the bore (14) , and is generally filled with an ionic thermometric liquid (18) . In the operation of the temperature sensor (10) , temperature is measured by the height of the liquid (18) in the bore (14) .
Abstract:
The present invention relates to processes utilizing ionic liquids for the dissolution of various polymers and/or copolymers, the formation of resins and blends, and the reconstitution of polymer and/or copolymer solutions, and the dissolution and blending of 'functional additives' and/or various polymers and/or copolymers to form advanced composite materials.
Abstract:
La presente invencion se refiere a procesos que utilizan liquidos ionicos para la disolucion de varios polimeros y/o copolimeros, la formacion de resinas y mezclas, y la reconstitucion de soluciones de polimero y/o copolimero, y la disolucion y mezcla de "aditivos funcionales" y/o varios polimeros y/o copolimeros para formar materiales compuestos avanzados.
Abstract:
A temperature sensor (10) having a capillary tube or stem (12) , sealed at both ends, with a thin bore (14) defined therein is applied to the measureme nt of temperatures having a range of about 100~ to +400~ Centigrade. A bub (16) comprising a liquid reservoir, is provided at one end of the capillary tube (12) , in liquid communication with the bore (14) , and is generally filled with an ionic thermometric liquid (18) . In the operation of the temperature sensor (10) , temperature is measured by the height of the liquid (18) in th e bore (14) .
Abstract:
A temperature sensor having a capillary tube or stem, sealed at both ends, with a thin bore defined therein is applied to the measurement of temperatures having a range of about -100° to +400° Centigrade. A bulb comprising a liquid reservoir, is provided at one end of the capillary tube, in liquid communication with the bore, and is generally filled with an ionic thermometric liquid. In the operation of the temperature sensor, temperature is measured by the height of the liquid in the bore.
Abstract:
Disclosed are composites comprising regenerated cellulose, a first active substance, a second active substance, and a linker. Methods for preparing the composites that involve the use of ionic liquids are also disclosed. Articles prepared from the disclosed composites and further disclosed.