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60586-52-9

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60586-52-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 60586-52-9 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 6,0,5,8 and 6 respectively; the second part has 2 digits, 5 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 60586-52:
(7*6)+(6*0)+(5*5)+(4*8)+(3*6)+(2*5)+(1*2)=129
129 % 10 = 9
So 60586-52-9 is a valid CAS Registry Number.

60586-52-9Downstream Products

60586-52-9Relevant academic research and scientific papers

Indium-catalyzed C-S cross-coupling of aryl halides with thiols

Reddy, V. Prakash,Swapna,Kumar, A. Vijay,Rao, K. Rama

, p. 3189 - 3191 (2009)

Indium-catalyzed C-S cross-coupling of aromatic and alkane thiols with aryl halides proceeds smoothly in the presence of In(OTf)3 (10 mol %), TMEDA (20 mol %), and KOH as a base in DMSO at 135 °C. When this protocol was utilized, a variety of thiols could be cross-coupled with aryl halides to afford the corresponding aryl sulfides in good to excellent yields.

Preparation method and application of novel ionic binuclear Schiff base titanium complex

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Paragraph 0102; 0103, (2018/04/03)

The invention provides a preparation method of a novel ionic binuclear Schiff base titanium complex and a synthetic method of applying the novel ionic binuclear Schiff base titanium complex to catalyze zinc powder and reduce disulfide or selenide to prepare sulfo(seleno) ester and dissymmetric sulfoether(selenide). The complex is a cationic binuclear Schiff base titanium complex, wherein titaniumatoms are bridged by oxygen atoms and are coordinated with a Schiff base ligand and a hydrone, and an ionic bond is formed by a cation part and an anion part of whole Schiff base titanium. The ionic binuclear Schiff base titanium complex is used as a catalyst, the zinc powder is used as a reducer, the disulfide(selenide) can be reduced and fractured, and the disulfide(selenide) can further and respectively react with anhydride, an alpha-bromo carbonyl compound and bromoalkane to prepare the sulfo(seleno) ester and the dissymmetric sulfoether(selenide). According to the preparation method provided by the invention, the defects that traditional lewis acid halide is deliquescent, an absolute solvent is used, conditions are strict and the like are overcome; an effective path for reducing the disulfide or selenide to prepare the sulfo(seleno) ester and the dissymmetric sulfoether(selenide) is provided, and the preparation method has the advantages of high yield, simpleness in operation andthe like.

Efficient dehydrative alkylation of thiols with alcohols catalyzed by alkyl halides

Yang, Yaqi,Ye, Zihang,Zhang, Xu,Zhou, Yipeng,Ma, Xiantao,Cao, Hongen,Li, Huan,Yu, Lei,Xu, Qing

supporting information, p. 9638 - 9642 (2017/11/30)

Alcohols can be efficiently converted into the useful thioethers by a transition metal- and base-free dehydrative S-alkylation reaction with thiols or disulfides by employing alkyl halides as the effective catalyst. This simple and efficient method is a green and practical way for the preparation of thioethers, as it tolerates a wide range of substrates such as aryl and alkyl thiols, as well as benzylic, allylic, secondary, tertiary, and even the less reactive aliphatic alcohols.

Palladium-catalyzed thiolation of alkanes and ethers with arylsulfonyl hydrazides

Guo, Sheng-Rong,He, Wei-Ming,Xiang, Jian-Nan,Yuan, Yan-Qin

, p. 8578 - 8581 (2014/07/22)

A new method for the preparation of alkyl aryl sulfides through direct oxidative thiolation of alkanes or ethers with arylsulfonyl hydrazides using di-tert-butyl peroxide (DTBP) as an oxidant catalyzed by Pd(OAc)2 has been reported. The C-H bonds in various alkanes or ethers were successfully converted into C-S bonds to yield the corresponding sulfides in moderate to good yields. the Partner Organisations 2014.

Synthesis and characterization of magnetic copper ferrite nanoparticles and their catalytic performance in one-pot odorless carbon-sulfur bond formation reactions

Gholinejad, Mohammad,Karimi, Babak,Mansouri, Fariborz

, p. 20 - 27 (2014/03/21)

In this article, we have introduced catalytic application of copper ferrite nanoparticles (CuFe2O4) for one-pot odorless production of aryl alkyl thioethers using thiourea and alkyl bromides in wet polyethylene glycol as a green solvent. The catalyst was also successfully applied for one-pot synthesis of symmetrical diaryl trithiocarbonates via the reaction of sodium sulfide, carbon disulfide and aryl iodides under heterogeneous reaction condition. Magnetic copper ferrite nanoparticles were synthesized using iron (III) chloride and copper (II) chloride, and characterized using XRD, FT-IR, AAS, and TEM analysis. The catalyst was recycled using simple magnetic separation and reused for the five consecutive runs in the reaction of iodobenzene, thiourea and benzyl bromide without appreciable loss of activity.

Efficient C-S cross-coupling of thiols with aryl iodides catalyzed by Cu(OAc)2·H2O and 2,2′-biimidazole

Zong, Chenglong,Liu, Jianli,Chen, Shengyan,Zeng, Runsheng,Zou, Jianping

supporting information, p. 212 - 218 (2014/04/03)

The classical Ullmann C-S cross coupling reaction of aryl iodides with aromatic/alkyl thiols under catalysis of 15 mol% Cu(OAc)2· H2O and 15 mol% 2,2′-biimidazole works at 80°C in DMSO for 3 h to provide a variety of aryl sulfides in good to excellent yields. The classical Ullmann C-S cross coupling reaction of aryl iodides with aromatic/alkyl thiols under catalysis of 15 mol% Cu(OAc)2· H2O and 15 mol% 2,2′-biimidazole works at 80°C in DMSO for 3 h to provide a variety of aryl sulfides in good to excellent yields. Copyright

Single-step thioetherification by indium-catalyzed reductive coupling of carboxylic acids with thiols

Sakai, Norio,Miyazaki, Takahiro,Sakamoto, Tomohiro,Yatsuda, Takuma,Moriya, Toshimitsu,Ikeda, Reiko,Konakahara, Takeo

supporting information, p. 4366 - 4369 (2012/10/29)

Direct thioetherification from a variety of aromatic carboxylic acids and thiols using a reducing system combined with InBr3 and 1,1,3,3-teramethyldisiloxane (TMDS) in a one-pot procedure is demonstrated. It was also found that a system combine

Nano-CuFe2O4 as a magnetically separable and reusable catalyst for the synthesis of diaryl/aryl alkyl sulfides via cross-coupling process under ligand-free conditions

Swapna, Kokkirala,Murthy, Sabbavarapu Narayana,Jyothi, Mocharla Tarani,Nageswar, Yadavalli Venkata Durga

experimental part, p. 5989 - 5996 (2011/10/08)

An efficient protocol was developed for the CuFe2O4 nanopowder-catalyzed aryl-sulfur bond formation between aryl halide and thiol/disulfide. A variety of aryl sulfides were synthesized in impressive yields with good chemoselectivity and functional group tolerance in the presence of a catalytic amount of CuFe2O4, Cs2CO 3 as base, in nitrogen atmosphere, under ligand-free conditions, in DMSO as solvent at 100 °C. The catalyst is air-stable, inexpensive, magnetically separable and recyclable up to four cycles.

Recyclable iron/graphite catalyst for c-s cross coupling of thiols with aryl halides under ligand-free conditions

Akkilagunta, Vijay Kumar,Reddy, Vutukuri Prakash,Rao, Kakulapati Rama

supporting information; experimental part, p. 1260 - 1264 (2010/07/05)

A recyclable iron/graphite (Fe/Cg) catalyst for the efficient C-S cross-coupling of various iodoarenes with aromatic/aliphatic thiols has been developed under ligand-free conditions (26 examples, up to 99% yield). The catalyst can be easily recovered and recycled up to seven cycles without loss of activity. Georg Thieme Verlag Stuttgart.

Nano indium oxide as a recyclable catalyst for C-S cross-coupling of thiols with aryl halides under ligand free conditions

Reddy, Vutukuri Prakash,Kumar, Akkilagunta Vijay,Swapna, Kokkirala,Rao, Kakulapati Rama

supporting information; experimental part, p. 1697 - 1700 (2009/09/06)

An efficient ligand-free C-S cross-coupling of aryl halides with aromatic/alkyl thiols has been developed using a catalytic amount of nanocrystalline indium oxide as a recyclable catalyst with KOH as the base in DMSO at 135 °C. A variety of aryl sulfides can be synthesized in excellent yields utilizing this protocol.

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