📜1,2-Di(Naphthalen-1-yl)Disulfane置于magnesium体系中,用 甲醇,苯 作为反应溶剂,化学反应 1.0H,以95%的收率获得产物1-奈硫酚 参考文献:Reduction Of Symmetric Disulfides To Thiols Using Mg In Methanol∗ 标题:Reduction Of Symmetric Disulfides To Thiols Using Mg In Methanol∗ 摘要:An Efficient Reduction Of Disulfides To Thiols Using Mg In Methanol Described. DOI:10.1080/00397919708006063
专利号:US-6159673-A 优先权日:1996-07-17 标 题:Oxonol compound, light-sensitive material and process for the synthesis of oxonol compound 发明人:NISHIGAKI JUNJI; DEGUCHI YASUAKI 权利人:FUJI PHOTO FILM CO LTD 摘要:An oxonol compound is represented by the following formula (I): in which Z is an atomic group that forms a cyclic amide ring; each of W1 and W2 independently is an atomic group that forms an acidic nucleus ring; and M is a cation. Other oxonol compounds, a light-sensitive material containing an oxonol compound and a process for the synthesis of an oxonol compound are also disclosed.
专利号:WO-2017089470-A1 优先权日:2015-11-27 标 题:Process for the synthesis of aryldiazonium salts using nitrogen oxides in oxygen-containing gas streams, especially from industrial waste gases 发明人:HOFMANN DAGMAR; HOFMANN JOSEFA; HEINRICH MARKUS 权利人:Friedrich-Alexander-Universität Erlangen-Nürnberg 摘要:The present invention relates to a process for the synthesis of aryldiazonium salts using nitrogen oxides in oxygen-containing gas streams, especially from industrial waste gases.
专利号:US-2013338369-A1 优先权日:2011-03-07 标 题 :Process for the Synthesis of Aminobiphenylene 发明人:HEINRICH MARKUS; PRATSCH GERALD 权利人:HEINRICH MARKUS; PRATSCH GERALD; BASF SE 摘要:The present invention relates to a process for the synthesis of 2-aminobiphenylene and derivatives thereof by reacting a benzene diazonium salt with an aniline compound under basic reaction conditions.
专利号:US-10150160-B2 优先权日:2014-12-04 标题 :Universal one-pot and up-scalable synthesis of SERS encoded nanoparticles 发明人:PAZOS PÉREZ NICOLÃ?S; MIR DE SIMÓN BERNAT 权利人:MEDCOM ADVANCE S A; MEDCOM ADVANCE S A 摘要:The universal one-pot and up-scalable synthesis of SERS encoded nanoparticles relies on the controlled co-absorption of mercaptoundecanoic acid (MUA) and the Raman code on the metallic surfaces of the nanoparticles. In contrast to most of the reported procedures which typically involve complex steps, the present method has demonstrated to be an easy and fast one-pot approach for the production of SERS-encoded nanoparticles. This versatile strategy allows for the SERS codification of particles with every molecule with affinity toward the metal surface, independently of its chemical nature, as exemplified here in the fabrication of 31 different encoded particles using the same standard procedure. In addition to the easiness of preparation, scalability to the liter regime, stability in aqueous solutions including PBS and chemical diversity, our SERS-encoded particles show considerably higher optical efficiency than those fabricated by using PEG or PVP polymers.
专利号:EP-1473330-B1 优先权日:1996-07-17 标题:Process for the synthesis of oxonol compound 发明人:NISHIGAKI JUNJI; DEGUCHI YASUAKI 权利人:FUJI PHOTO FILM CO LTD 摘要:An oxonol compound is represented by the following formula (I): in which each of Z, W<1> and W<2> independently is an atomic group that forms a heterocyclic ring; and M is a cation. A process for the synthesis of an oxonol compound is disclosed.
专利号:WO-9410327-A1 优先权日:1992-10-28 标 题 :Enzymatic synthesis of polyaniline 发明人:ZEMEL HAYA; QUINN JOHN F 权利人:ALLIED SIGNAL INC 摘要:This invention relates to a process for the enzymatic synthesis of electrically conductive substituted and unsubstituted polyanilines. Aniline monomer(s), an oxidizing agent, which comprises an enzyme and an electron acceptor, and an acidifying agent are reacted together to form polyanilines.
摘要:Croft, R. A.; Bull, J. A., Science of Synthesis Knowledge Updates, (2018) 4, 409. 摘要:Ayad, T.; Pirat, J.-L.; Virieux, D., Science of Synthesis Knowledge Updates, (2022) 1, 321. 摘要:Sinha, A. K.; Singh, R., Science of Synthesis, (2021) , 513. 摘要:Kwiatkowska, M.; Kiełbasiński, P., Science of Synthesis: Knowledge Updates, (2024) 3, 438.