Sodium Molybdate Dihydrate 在 盐酸体系中,用 水作为反应溶剂,反应 48.0H,获得 Molybdic Acid 参考文献:Synthesis Of Moo3 Microrods Via Phytoonsituents Of Azadirachta Indica Leaf To Study The Cationic Dye Degradation And Antimicrobial Properties 标题:Synthesis Of Moo3 Microrods Via Phytoonsituents Of Azadirachta Indica Leaf To Study The Cationic Dye Degradation And Antimicrobial Properties 摘要:This Work Is To Report An Environmental Benign Route For The Fabrication Of Moo3 (Mo) Microrods Using Leaf Extract Of Azadirachta Indica. The Optical,Structural,Compositions And Specific Surface Area Properties Of The Mo Microrods Were Characterized By Uv-Drs,Pl,Ft-Ir,Xrd,Sem,Edx,And Bet Technique. Methylene Blue (Mb) Dye Was Used To Assess The Photocatalytic Activity Of Azadirachta Indica Leaves Modified Moo3 (Azi-Mo) Microrods Under Visible Irradiations. Controlling Various Parameters Such As Azi-Mo Dosage,Initial Mb Concentration,And Ph Value Of (Cationic Dye) Mb Solution Can Lead To The Enhancement Of The Photocatalytic Degradation Of The Microrods. The Pseudo-First Order Kinetics Was Followed By Azi-Mo. The Antimicrobial Performance Of Mo And Azi-Mo Were Tested,And It Shows Tremendous Activity Against Gram Positive,Gram Negative And Fungal Strain. (C) 2018 Published By Elsevier B.V. Doi:10.1016/J.Jallcom.2018.04.230
专利信息
专利号:US-7241399-B2 优先权日:2000-09-08 标题 :Synthesis of nanoparticles 发明人:HAUBOLD STEPHAN; HAASE MARKUS; RIWOTZKI KARSTEN; WELLER HORST; MEYSSAMY HEIKE; IBARRA FERNANDO 权利人:CT ANGEWANDTE NANOTECH CAN 摘要:Methods for the preparation of inorganic nanoparticles capable of fluorescence, wherein the nanoparticles consist of a host material that comprises at least one dopant. The synthesis of the invention in organic solvents allows to gain a considerably higher yield compared to the prior art synthesis in water. All kinds of objects can advantageously be marked and reliably authenticated by using an automated method on the basis of a characteristic emission. Further, the size distribution of the prepared nanoparticles is nartower which renders a subsequent size-selected separation process superfluous.
专利号:WO-2023090930-A1 优先权日:2021-11-18 标 题:Pt-mo catalyst for synthesis of hydrogen, and method of preaparing hydrogen using pt-mo catalyst 发明人:LEE KWAN-YOUNG; JANG JI SOO; KIM CHAN HUN; PARK TAE IN; LEE SEONGHO 权利人:UNIV KOREA RES & BUS FOUND 摘要:The present invention relates to a platinum (Pt)-molybdenum (Mo) catalyst for synthesis of hydrogen and a method of preparing hydrogen using same, the catalyst for synthesis of hydrogen according to the present invention comprising: a porous carrier; platinum carried in fine pores of the porous carrier; and molybdenum carried in mixture with the platinum in the fine pores. According to the present invention, hydrogen can be effectively obtained from a liquid organic hydrogen storage since dehydrogenation activity is significantly improved even at a low temperature by carrying platinum and molybdenum in a mixed state in the porous carrier.
专利号:WO-2017175101-A1 优先权日:2016-04-07 标 题:Synthesis of copper phthalocyanine using deep eutectic solvent 发明人:SHANKARLING G S; JOGLEKAR AMRUTA R 权利人:SHANKARLING G S 摘要:The present disclosure generally relates to synthesis of copper phthalocyanine. In particular, the present disclosure relates to a method of synthesis of copper phthalocyanine using deep eutectic solvent (DES), which can be carried out at low temperature, does not involve use of high boiling solvents, uses less urea and allows solvents used in the process to be recycled.
专利号:WO-2024200681-A1 优先权日:2023-03-31 标题:A catalytic material comprising supported co3mo3n for the synthesis of nh3 发明人:JEVTOVIKJ IVANA; SCHUNK STEPHAN A; FREI ELIAS CHRISTOPHER; TITLBACH SVEN; HEDRICK SCOTT; DISANTIS DAVID D; GESKE MICHAEL; MUELLER MATTHIAS 权利人:BASF SE; UNIV BERLIN TECH 摘要:The present invention relates to a catalytic material for the synthesis of NH3, the catalytic material comprising Co3Mo3N, one or more first promoter metals M1 selected from the group consisting of alkali metals, and mixtures of two or more thereof, and one or more second promoter metals M2 selected from the group consisting of V, Nb, Ta, Mo, W, Mn, Re, Fe, Ru, Os, Co, Rh, Ir, Ni, Ga, In, Sc, Y, La, and mixtures of two or more thereof, wherein the one or more first promoter metals M1 and the one or more second promoter metals M2 are supported on the Co3Mo3N. Further, the present invention relates to a process for preparing said catalytic material and a catalytic material obtained or obtainable by said process. Yet further, the present invention relates to use of the catalytic material according to the present invention and a process for synthesizing NH3.
专利号:WO-2024165611-A1 优先权日:2023-02-07 标题:Production of a disaccharide and/or milk oligosaccharide by a cell with reduced synthesis of udp-glcnac 发明人:BEAUPREZ JOERI; DECOENE THOMAS; VERCAUTEREN ANNELIES 权利人:INBIOSE NV 摘要:The present invention is in the technical field of synthetic biology, metabolic engineering and cell cultivation. The invention provides a cell for production of a disaccharide and/or an oligosaccharide like a milk oligosaccharide wherein synthesis of UDP-N-acetylglucosamine in said cell is rendered less functional. The invention further provides use of said cell in a cultivation or incubation. The invention also describes methods for the production of a disaccharide and/or an oligosaccharide like a milk oligosaccharide using said cell as well as the purification of said disaccharide and/or oligosaccharide like a milk oligosaccharide.
专利号:US-5302520-A 优先权日:1990-09-25 标 题:Enzymatic synthesis of isotopically labeled carbohydrates 发明人:GOUX WARREN J 权利人:UNIV TEXAS 摘要:The present invention relates to a general method of enzymatic synthesis of isotopically labeled carbohydrates, sugars and nucleosides. Labeled citric acid cycle intermediates, amino acids and ribose mononucleotides may be rapidly and conveniently synthesized from labeled pyruvate, lactate or L-alanine. The method employs a novel nicotinamide dinucleotide regeneration system which permits use of low NADH levels. The method may be manipulated to allow labeling at a variety of carbon/hydrogen sites.
参考文献:10.1007/978-1-4939-0844-8_13 摘要:Takahashi D, Nakayama T, Miki Y, Kawamura Y, Uemura M. Proteomic approaches to identify cold-regulated plasma membrane proteins. Methods Mol Biol. 2014;1166():159–70. doi: 10.1007/978-1-4939-0844-8_13. 参考文献:10.1007/978-1-4939-9492-2_18 摘要:Rezig IM, Bremner SK, Bhutta MS, Salt IP, Gould GW, McInerny CJ. Genetic and Cytological Methods to Study ESCRT Cell Cycle Function in Fission Yeast. Methods Mol Biol. 2019;1998():239–50. doi: 10.1007/978-1-4939-9492-2_18. 参考文献:10.1007/s12298-020-00845-8 摘要:Lapaz ADM, de Camargos LS, Yoshida CHP, Firmino AC, de Figueiredo PAM, Aguilar JV, Nicolai AB, Silva de Paiva WD, Cruz VH, Tomaz RS. Response of soybean to soil waterlogging associated with iron excess in the reproductive stage. Physiology and Molecular Biology of Plants. 2020 Jul 28;26(8):1635–48. doi: 10.1007/s12298-020-00845-8. 参考文献:10.1007/bf02950794 摘要:Huang KX, Clausen J. Uptake, distribution, and turnover rates of selenium in barley. Biol Trace Elem Res. 1994 Mar;40(3):213–23. doi: 10.1007/bf02950794.