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1,3,5-trichloro-2,4,6-tris[(trimethylsilyl)ethynyl]benzene is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

351014-15-8

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351014-15-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 351014-15-8 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 3,5,1,0,1 and 4 respectively; the second part has 2 digits, 1 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 351014-15:
(8*3)+(7*5)+(6*1)+(5*0)+(4*1)+(3*4)+(2*1)+(1*5)=88
88 % 10 = 8
So 351014-15-8 is a valid CAS Registry Number.

351014-15-8Relevant academic research and scientific papers

Synthesis of Chlorine-Substituted Graphdiyne and Applications for Lithium-Ion Storage

Wang, Ning,He, Jianjiang,Tu, Zeyi,Yang, Ze,Zhao, Fuhua,Li, Xiaodong,Huang, Changshui,Wang, Kun,Jiu, Tonggang,Yi, Yuanping,Li, Yuliang

, p. 10740 - 10745 (2017)

Chlorine-substituted graphdiyne (Cl-GDY) is prepared through a Glaser–Hay coupling reaction on the copper foil. Cl-GDY is endowed with a unique π-conjugated carbon skeleton with expanded pore size in two dimensions, having graphdiyne-like sp- and sp2

Benzodithiophene and benzotrithiophene as π cores for two-and three-blade propeller-shaped ferrocenyl-based conjugated systems

Rossi, Serena,Bisello, Annalisa,Cardena, Roberta,Orian, Laura,Santi, Saverio

, p. 5966 - 5974 (2017)

The syntheses of linear and star-shaped bis- and tris(ferrocenyl) derivatives of benzo[1,2-b:4,5-b′]dithiophene and benzo[1,2-b:3,4-b′:5,6-b′′]trithiophene are achieved through one-pot CuI/TMEDA-catalyzed (TMEDA = tetramethylethylenediamine) multiple annulations of bromoethynylbenzenes with sodium sulfide. In addition, the preparation of the parent benzotrithiophene in a good yield with a short reaction time is achieved through the threefold annulation of 1,3,5-trifluoro-2,4,6-tris(trimethylsilyl)ethynylbenzene. The computed structural and electronic features of these ferrocenyl derivatives as well as their UV/Vis spectra and electrochemistry are discussed, and the results provide insights into the effect of the presence of three rather than two ferrocenyl units. To the best of our knowledge, 2,5,8-tris(ferrocenyl)benzo[1,2-b;3,4-b′;5,6-b′′]trithiophene is the first organometallic complex containing benzotrithiophene.

Bandgap engineering in benzotrithiophene-based conjugated microporous polymers: a strategy for screening metal-free heterogeneous photocatalysts

Han, Songjie,Li, Ziping,Ma, Si,Zhi, Yongfeng,Xia, Hong,Chen, Xiong,Liu, Xiaoming

, p. 3333 - 3340 (2021/02/26)

Metal-free conjugated microporous polymers (CMPs) as visible-light active and recyclable photocatalysts offer a green and sustainable alternative to classical metal-based photosensitizers. However, the strategy for screening CMP-based heterogeneous photocatalysts has not been interpreted up to now. Herein, we present a general strategy for obtaining excellent solid photocatalysts, which is to implement bandgap engineering in the same series of materials. As a proof of concept, three conjugated porous materials containing benzo[1,2-b:3,4-b′:5,6-b′′]trithiophene building blocks (BTT-CMP1, BTT-CMP2 and BTT-CMP3) were successfully constructed. They possess permanent porosity with a large specific surface area and excellent stability. By changing the linker between benzotrithiophene units, the bandgaps, energy levels and photoelectric performances including the absorption, transient photocurrent responses and photocatalytic performances of BTT-CMPs could be handily modulated. Indeed, BTT-CMP2 displayed the best catalytic activity for visible-light-induced synthesis of benzimidazoles among the three CMP materials, even higher than that of small molecule photocatalysts. As a metal-free photocatalyst, interestingly, the screened BTT-CMP2 also showed extensive substrate applicability and outstanding recyclability. Additionally, we have the opinion that this strategy will prove to be a guiding principle for screening superior CMP-based photocatalysts and broaden their application fields.

CHARGE TRANSPORTING MATERIAL FOR OPTOELECTRONIC AND/OR PHOTOELECTROCHEMICAL DEVICES

-

, (2017/07/06)

The present invention relates to an optoelectronic and/or photoelectrochemical device comprising at least one organic-inorganic perovskite as sensitizer and at least one compound of formula (I) comprising one benzotrithiophene core Q, wherein each thiophe

Benzotrithiophene-based hole-transporting materials for 18.2 % perovskite solar cells

Molina-Ontoria, Agustín,Zimmermann, Iwan,Garcia-Benito, Inés,Gratia, Paul,Roldán-Carmona, Cristina,Aghazada, Sadig,Graetzel, Michael,Nazeeruddin, Mohammad Khaja,Martín, Nazario

, p. 6270 - 6274 (2016/05/24)

New star-shaped benzotrithiophene (BTT)-based hole-transporting materials (HTM) BTT-1, BTT-2 and BTT-3 have been obtained through a facile synthetic route by crosslinking triarylamine-based donor groups with a benzotrithiophene (BTT) core. The BTT HTMs we

Benzocarbazoles three thiophene compound and its preparation and use

-

, (2016/11/07)

The invention relates to benzo terthiophene compound as well as a preparation method and usage thereof. The structure of the benzo terthiophene compound is expressed by a formula I, and in the formula, the definition of X is described in the description.

NOVEL HETEROCYCLIC COMPOUND AND USE THEREOF

-

, (2011/09/20)

Disclosed are a heterocyclic compound characterized by being represented by formula (1), and a composition of the compound. Also disclosed is an organic electronic device using the compound. (In formula (1), X1, X2 and X3 each independently represents a sulfur atom or a selenium atom; and R1-R6 each independently represents an aromatic hydrocarbon group, an aliphatic hydrocarbon group, a halogen atom, a hydroxyl group, an alkoxyl group, a mercapto group, an alkylthio group, a boronic acid group, a nitro group, a substituted amino group, an amide group, an acyl group, a carboxyl group, an acyloxy group, a cyano group, a sulfo group, a sulfamoyl group, an alkylsulfamoyl group, a carbamoyl group, an alkylcarbamoyl group or a hydrogen atom, provided that all the R1-R6 are not hydrogen atoms at the same time.) The compound represented by formula (1) is suitable for use in an organic electronic device such as an organic EL element, an organic transistor element and a liquid crystal element.

One-pot synthesis of benzo[b]thiophenes and benzo[b]selenophenes from o-halo-substituted ethynylbenzenes: convenient approach to mono-, bis-, and tris-chalcogenophene-annulated benzenes

Kashiki, Tomoya,Shinamura, Shoji,Kohara, Masahiro,Miyazaki, Eigo,Takimiya, Kazuo,Ikeda, Masaaki,Kuwabara, Hirokazu

supporting information; experimental part, p. 2473 - 2475 (2009/10/18)

A convenient one-pot procedure for the synthesis of benzo[b]thiophenes and selenophenes from readily available o-halo-ethynylbenzene precursors is described. Regardless of the substituent on the acetylene terminus or the number of cyclization moieties on the precursors, various benzo[b]thiophenes and selenophenes, including not only the parent, alkyl-, and phenyl-substituted derivatives but also benzo[1,2-b:4,5-b']dithiophenes and diselenophenes and benzo[1,2-b:3,4-b':5,6-b'']trithiophenes and triselenophenes can be prepared in good to high yields.

PROCESSES FOR PRODUCING POLY-ETHYNYL-SUBSTITUTED AROMATIC COMPOUND

-

Page column 8-9, (2010/02/05)

A process for preparing a poly-ethynyl-substituted aromatic compound characterized by reacting a halogenated benzene with an ethynylzinc halide; a process for preparing a poly-ethynyl-substituted aromatic compound characterized by using a halogenated benzene having at least two kinds of halogen atoms as a halogenated benzene, and (A) reacting one kind of the halogen atoms existing in the halogenated benzene with an ethynyl group-containing compound; and (B) reacting the other kind of halogen atoms remaining in the formed compound with an ethynylzinc halide. The poly-ethynyl-substituted aromatic compound is used as liquid crystals, nonlinear optical materials, electroconductive materials and the like

Synthesis of differentially substituted hexaethynylbenzenes based on tandem sonogashira and Negishi cross-coupling reactions

Sonoda, Motohiro,Inaba, Akiko,Itahashi, Kayo,Tobe, Yoshito

, p. 2419 - 2421 (2007/10/03)

(matrix presented) Synthesis of polyethynyl-substituted aromatic compounds was achieved efficiently by the use of the Negishi cross-coupling reaction, and this method, coupled with the Sonogashira reaction, was applied to the synthesis of differentially s

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