欧盟法规
ECHA物质ECHA物质C&L通报REACH预注册上下游产品
tin(IV) chloride water chlorine hydrogenchloridebis(toluene-3,4-dithiolato)tin(IV) 专利信息
专利号:US-9422216-B2
优先权日:2012-08-27
标 题:Method for synthesis of lactic acid and its derivatives and catalyst for preparing same
发明人:ZHOU XIAOPING
权利人:MICROVAST POWER SYSTEMS CO LTD; MICROVAST POWER SYSTEMS CO LTD
摘要:The present disclosure provides a catalyst for preparing lactic acid and derivatives thereof, comprising at least one of metallic compounds MX n , wherein M is selected from Na, K, Mg, Ca, Sr, Ba, Al, Ga, In, Sn, Sb, Bi, Cr, Mn, Fe, Co, Ni and Zn, and n is an integer of 1 to 6. The present disclosure further provides a method for synthesis of lactic acid and derivatives thereof, wherein at least one raw material including carbohydrates, at least one alcohol, at least one of the aforesaid catalysts and at least one solvent are heated to react to prepare lactic acid and derivatives thereof.
专利号:US-12302762-B2
优先权日:2017-07-20
标题 :Material, system and method making use of plasmon resonance
发明人:RADOVANOVIC PAVLE
权利人:RADOVANOVIC PAVLE
摘要:A plasmonic nanostructure material having semiconductor nanocrystals or metal-oxide nanocrystals configured with point defects to provide localized surface plasmon resonance as a parameter for tuning the electronic structure of the nanocrystals. A method of preparing a plasmonic nanostructure material including: colloidal synthesis of nanocrystals to provide point defects resulting in localized surface plasmon resonance as a parameter for tuning the electronic structure of the nanocrystals; and depositing nanocrystals as a thin film, growing nanocrystals on a desired substrate, or drawing nanocrystals into a nanowire.
专利号:US-7736547-B2
优先权日:2008-03-11
标 题:Method of synthesis of proton conducting materials
发明人:GARZON FERNANDO HENRY; EINSLA MELINDA LOU; MUKUNDAN RANGACHARY
权利人:LOS ALAMOS NAT SECURITY LLC
摘要:A method of producing a proton conducting material, comprising adding a pyrophosphate salt to a solvent to produce a dissolved pyrophosphate salt; adding an inorganic acid salt to a solvent to produce a dissolved inorganic acid salt; adding the dissolved inorganic acid salt to the dissolved pyrophosphate salt to produce a mixture; substantially evaporating the solvent from the mixture to produce a precipitate; and calcining the precipitate at a temperature of from about 400° C. to about 1200° C.
专利号:US-2024318335-A1
优先权日:2023-03-22
标 题:Catalyst, its preparation and its use in ammonia synthesis
发明人:HO JOHNNY CHUNG YIN; CHEN DONG; ZHANG SHAOCE
权利人:UNIV CITY HONG KONG
摘要:A catalyst in ammonia synthesis includes a first layer of metal monochalcogenide-based material; a second layer of metal monochalcogenide-based material stacked with and is spaced from the first layer of metal monochalcogenide-based material by a first distance; wherein the metal monochalcogenide-based material includes SnS. A method of preparing the catalyst and an electrochemical ammonia synthesizing device making use of the catalyst thereof are also addressed.
专利号:US-6986818-B2
优先权日:2000-06-02
标题 :Method for producing nanostructured metal-oxides
发明人:TILLOTSON THOMAS M; SIMPSON RANDALL L; HRUBESH LAWRENCE W; GASH ALEXANDER
权利人:UNIV CALIFORNIA
摘要:A synthetic route for producing nanostructure metal-oxide-based materials using sol-gel processing. This procedure employs the use of stable and inexpensive hydrated-metal inorganic salts and environmentally friendly solvents such as water and ethanol. The synthesis involves the dissolution of the metal salt in a solvent followed by the addition of a proton scavenger, which induces gel formation in a timely manner. Both critical point (supercritical extraction) and atmospheric (low temperature evaporation) drying may be employed to produce monolithic aerogels and xerogels, respectively. Using this method synthesis of metal-oxide nanostructured materials have been carried out using inorganic salts, such as of Fe 3+ , Cr 3+ , Al 3+ , Ga 3+ , In 3+ , Hf 4+ , Sn 4+ , Zr 4+ , Nb 5+ , W 6+ , Pr 3+ , Er 3+ , Nd 3+ , Ce 3+ , U 3+ and Y 3+ . The process is general and nanostructured metal-oxides from the following elements of the periodic table can be made: Groups 2 through 13, part of Group 14 (germanium, tin, lead), part of Group 15 (antimony, bismuth), part of Group 16 (polonium), and the lanthanides and actinides. The sol-gel processing allows for the addition of insoluble materials (e.g., metals or polymers) to the viscous sol, just before gelation, to produce a uniformly distributed nanocomposites upon gelation. As an example, energetic nanocomposites of Fe x O y gel with distributed Al metal are readily made. The compositions are stable, safe, and can be readily ignited to thermitic reaction.
专利号:US-2009230365-A1
优先权日:2008-03-11
标题:Method of synthesis of proton conducting materials