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2-(4-chloro)phenyl-1,2,3,4-tetrahydroisoquinoline-1-carbonitrile is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

94206-79-8

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94206-79-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 94206-79-8 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 9,4,2,0 and 6 respectively; the second part has 2 digits, 7 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 94206-79:
(7*9)+(6*4)+(5*2)+(4*0)+(3*6)+(2*7)+(1*9)=138
138 % 10 = 8
So 94206-79-8 is a valid CAS Registry Number.

94206-79-8Downstream Products

94206-79-8Relevant academic research and scientific papers

Harnessing visible-light energy for unbiased organic photoelectrocatalysis: Synthesis of: N -bearing fused rings

Gong, Ming,Huang, Mengmeng,Kim, Jong Seung,Kim, Jung Keun,Li, Yabo,Wu, Yangjie,Zhang, Jianye

supporting information, p. 837 - 845 (2022/02/02)

In this research, we realized the conversion of visible light to electrical energy and C-H activation by the synergistic catalytic effect of visible-light and photoelectric current. An atom-economical and environment-friendly self-biasing interfacial photo-electrocatalytic method for cascade C-H activation/cyclization is provided to construct N-containing fused ring compounds using an m-BiVO4 film as a photoanode. There are obvious advantages of this transformation due to no external bias and a small overpotential, saving electrical energy and avoiding excessive oxidation of malononitrile to achieve better chemical reactivity and selectivity. Meanwhile, the recovered photoanode could be used more than ten times. This journal is

Synthesis method of alpha-cyanide

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Paragraph 0039-0040, (2021/08/19)

The invention relates to the field of synthesis of chemical products, in particular to a synthesis method of alpha-cyanide, the synthesis method comprises the following steps: starting from easily available tertiary amine compounds, respectively taking ch

Electrochemical strategies for: N -cyanation of secondary amines and α C -cyanation of tertiary amines under transition metal-free conditions

Cai, Hu,Fu, Yaping,Fu, Zhengjiang,Guo, Shengmei,Hao, Guangguo,Yi, Xuezheng,Yin, Jian,Zhong, Tingting

supporting information, p. 9422 - 9427 (2021/12/09)

Transition metal-free electrochemical approaches for the N-cyanation of secondary amines and the α C-cyanation of tertiary amines have been well established, with products being obtained in moderate to good yields and with good functional group tolerance under ambient conditions. The synthetic application of the protocols has been highlighted through scale-up experiments in a galvanostatic mode. Preliminary mechanistic investigation has confirmed that TBAB played a critical role in N-cyanation transformation and has indicated that the transformation might proceed via a free radical process. This journal is

Electrochemically promoted oxidative α-cyanation of tertiary and secondary amines using cheap AIBN

Cai, Tian-Cheng,Gui, Qing-Wen,Hu, Wenxia,Li, Qiang,Liu, Xiaoying,Teng, Fan,Wang, Xiaoli,Xiong, Zhi-Yuan,Yu, Jialing

supporting information, p. 8254 - 8258 (2021/10/12)

The electrochemical α-cyanation of tertiary and secondary amines has been developed by using a cheap cyanide reagent, azobisisobutyronitrile (AIBN). The CN radical, generated throughn-Bu4NBr-meidated electrochemical oxidation, participates in a novel α-cyanation reaction under exogenous oxidant-free conditions.

Donor-acceptor type [4+3] covalent organic frameworks: sub-stoichiometric synthesis and photocatalytic application

Liao, Qiaobo,Xu, Wentao,Huang, Xin,Ke, Can,Zhang, Qi,Xi, Kai,Xie, Jin

, p. 707 - 714 (2020/04/15)

Three unprecedented 2D [4+3] covalent organic frameworks (TTCOF-1, TTCOF-2, and TTCOF-3) have been prepared by substoichiometric condensation of tetratopic and tritopic monomers, overcoming the limitations of the design rules of conventional topologies. By reticulating the tetraphenylethylene (TPE)-based and triazine-based moieties into COF frameworks, novel electron donor-acceptor (D-A) type structures were obtained. These TTCOFs have good photocatalytic activity in aerobic C(sp3)-H bond functionalization and arylboronic acid oxidation driven by visible light, with yields up to 94%. This can expedite possibilities of COFs with new structural and topological complexities and can also expand the application of COF-based photocatalysis in synthetic chemistry.

Oxidative cyanation of: N-aryltetrahydroisoquinoline induced by visible light for the synthesis of α-aminonitrile using potassium thiocyanate as a "cN" agent

Yi, Bing,Yan, Ning,Yi, Niannian,Xie, Yanjun,Wen, Xiaoyong,Au, Chak-Tong,Lan, Donghui

, p. 29721 - 29725 (2019/10/01)

A novel method for the synthesis of α-aminonitrile through visible-light-induced oxidative cyanation of N-aryltetrahydroisoquinoline with potassium thiocyanate has been developed. The process does not require the use of a photocatalyst, transition metal r

Magnetic nanoparticle-supported eosin Y ammonium salt: An efficient heterogeneous catalyst for visible light oxidative C–C and C–P bond formation

Li, Pinhua,Wang, Guan-Wu,Zhu, Xianjin,Wang, Lei

supporting information, p. 3448 - 3455 (2019/05/15)

A highly efficient visible light mediated C–C and C–P coupling reactions of sp3 C–H bonds adjacent to the nitrogen atom in tetrahydroisoquinoline derivatives with pronucleophiles such as nitroalkanes, malononitrile, dimethyl malonate and H-phos

Covalently hooked EOSIN-Y in a Zr(IV) framework as visible-light mediated, heterogeneous photocatalyst for efficient C–H functionalization of tertiary amines

Kumar, Gaurav,Solanki, Pratik,Nazish, Mohd,Neogi, Subhadip,Kureshy, Rukhsana I.,Khan, Noor-ul H.

, p. 298 - 304 (2019/02/26)

Herein, we report the synthesis of a novel heterogeneous photo-catalyst by utilizing post-synthetic modification of an amine functionalized Zr(IV) metal-organic framework (UiO-66-NH2) through covalent hooking of EOSIN-Y via dehydrating coupling. The characterization of the catalyst was accomplished by FT-IR, XRD, BET surface analysis, TGA, as well as TEM, SEM, XPS, DRS-UV–visible, and NMR spectroscopy, confirming successful covalent linking of EOSIN-Y with the pendent –NH2 functionality in the framework. That post-modified EY@UiO-66-NH2 acts as simple and green visible light mediated photo-catalyst for the C–H activation of tertiary amines with excellent yields. Importantly, the activity of dye incorporated heterogeneous photo-catalyst is found superior to that for the homogeneous photo-catalyst EOSIN-Y. Thus, separation difficulty of homogeneous catalysis, as well as the environmental adverse effects of toxic EOSIN-Y can be excluded by developing such photo-catalyst. Moreover, EY@UiO-66-NH2 catalyst could be consistently recycled up to 10 cycles, without any significant loss in activity. Based on literature report and experimental findings, we also propose a plausible mechanism for the reaction.

New catalytic effect of thiourea on the oxidative cyanation of N-aryltetrahydroisoquinolines

Ullah, Bakhtar,Zhou, Yuli,Chen, Jingwen,Bao, Zongbi,Yang, Yiwen,Yang, Qiwei,Ren, Qilong,Zhang, Zhiguo

supporting information, p. 348 - 351 (2019/01/04)

Thiourea itself has been introduced as a mild and efficient organocatalyst for the oxidative α -cyanation of N-aryltetrahydroisoquinolines (THIQs) with trimethylsilyl cyanide (TMSCN), giving the corresponding products in good to excellent yields. Experime

Redox-neutral C–H cyanation of tetrahydroisoquinolines under photoredox catalysis

Ide, Takafumi,Shimizu, Kazunori,Egami, Hiromichi,Hamashima, Yoshitaka

supporting information, p. 3258 - 3261 (2018/07/25)

Redox-neutral cyanation of C–H bond adjacent to a nitrogen atom was achieved by using the combination of a photoredox catalyst and p-toluenesulfonyl cyanide. The reaction of tetrahydroisoquinolines proceeded smoothly, affording the corresponding cyanated products selectively in good to high yield. Although the reaction rate became slower in the case of the substrates having electron-withdrawing groups, high yields were achieved by elongating the reaction time. Although the yields were only moderate, the reaction conditions were also applicable to N,N-dialkylanilines.

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