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N,N-bis-(tert-butoxycarbonyl)-o-phenylenediamine is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

438533-54-1

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438533-54-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 438533-54-1 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 4,3,8,5,3 and 3 respectively; the second part has 2 digits, 5 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 438533-54:
(8*4)+(7*3)+(6*8)+(5*5)+(4*3)+(3*3)+(2*5)+(1*4)=161
161 % 10 = 1
So 438533-54-1 is a valid CAS Registry Number.

438533-54-1Downstream Products

438533-54-1Relevant academic research and scientific papers

Nanocrystalline titania-based sulfonic acid (TiO2-Pr-SO 3H) as a new, highly efficient and recyclable solid acid catalyst for the N-Boc protection of amines at room temperature

Atghia,Sarvi Beigbaghlou

, p. 42 - 49 (2013)

Sulfonic acid-functionalized nanoporous titania (TiO2-Pr-SO 3H) was prepared from the reaction of (3-mercaptopropyl) trimethoxysilane and TiO2, then by oxidation of thiols group with hydrogen peroxide. The morphology and acidity of synthesized catalyst was characterized by FT-IR, SEM, TEM, TGA and XRD techniques and Hammett acidity test. The catalytic performance of TiO2-Pr-SO3H was investigated in the N-tert-butoxycarbonylation of amines under solvent-free conditions at room temperature. Our novel method is mild, chemoselective and has the advantages such as heterogeneous catalysis, low cost and the recyclability of the catalyst.

A Versatile Synthesis of Vinyl-Substituted Heterocycles via Regio- And Enantioselective Pd-Catalyzed Tandem Allylic Substitution

Qian, Chao,Tang, Wenjun,Tang, Wenjun

supporting information, p. 4483 - 4488 (2020/06/05)

We herein report a versatile, regio- and enantioselective palladium-catalyzed tandem allylic substitution powered by a chiral bisphosphorus ligand WingPhos with the palladium loading as low as 0.1 mol %, forming a series of chiral vinyl-substituted heterocycles, including tetrahydroquinoxalines, piperazines, dihydro-2H-benzo[b][1,4]-oxazines, and morpholines, in exellent ee's and yields. The protocol features readily available starting materials, mild reaction conditions, and a broad substrate scope. Mechanistic investigation supports a tandem allylic substitution process.

Organic/inorganic Fe3O4@MCM-41@Zr-piperazine: An impressive magnetite nanocatalyst for N-Tert-Butoxycarbonylation of amines

Pourhasan-Kisomi, Reyhaneh,Shirini, Farhad,Golshekan, Mostafa

, p. 3859 - 3870 (2019/05/08)

Fe3O4@MCM-41@Zirconium magnetic nanoparticles modified with piperazine (Fe3O4@MCM-41@Zr-piperazine), as a newly reported catalyst, shows excellent catalytic activity in N-tertbutoxycarbonylation of amines under the mild and solvent-free conditions. Accordingly, different derivatives of N-tert-butylcarbamates owning diverse aliphatic, aromatic and heteroaromatic amines were prepared efficiently. Good performance of this method for the majority of used complex or acidsensitive substrates and facile separation of this nanocatalyst due to its superparamagnetic nature from the reaction mixture via an external magnetic field for several times are the most important striking features of this protocol.

Preparation, characterization and application of 1,4-disulfopiperazine-1,4-diium chloride ([Piper-(SO3H)2]·2Cl) as an efficient dicationic ionic catalyst for the N-Boc protection of amines

Koodehi, Tahereh Ghauri,Shirini, Farhad,Goli-Jolodar, Omid

, p. 443 - 456 (2017/01/10)

In this work, 1,4-disulfopiperazine-1,4-diium chloride ([Piper-(SO3H)2]·2Cl), as a novel Br?nsted acidic ionic catalyst is synthesized and characterized using a series of techniques including FT-IR, TGA, DTA, SEM, pH analysis and Hammett acidity function. This substance can significantly catalyze the N-Boc protection of amines without solvent interference at room temperature. The advantages of this manner are chemoselectivity, short reaction times, suitable yields, excellent yields of the products, without solvent interference and ease of preparation as well as reusability of the catalyst.

Pd(II)-Catalyzed Aerobic Intermolecular 1,2-Diamination of Conjugated Dienes: A Regio- and Chemoselective [4 + 2] Annulation for the Synthesis of Tetrahydroquinoxalines

Wu, Zhengxing,Wen, Ke,Zhang, Jingang,Zhang, Wanbin

supporting information, p. 2813 - 2816 (2017/06/07)

A Pd(II)-catalyzed aerobic intermolecular 1,2-diamination of conjugated dienes was developed for the regio- and chemoselective preparation of a variety of functionalized tetrahydroquinoxalines, using simple sulfonyl protected o-phenylendiamines as a nitrogen source. This methodology provides a direct and efficient synthesis of tetrahydroquinoxalines. O2 was used as the stoichiometric oxidant, and reaction conditions were applied to a series of o-phenylendiamines and conjugated dienes. 35 examples are described, and good yields and selectivities are obtained for the majority of the products.

Sustainable and chemoselective N-Boc protection of amines in biodegradable deep eutectic solvent

Azizi, Najmedin,Shirdel, Fatemeh

, p. 1069 - 1074 (2017/05/12)

Abstract: A green and practical approach for the chemoselective N-tert-butyloxycarbonylation of structurally diverse amines with di-tert-butyl dicarbonate (Boc2O) is described. Selective N-Boc protection was achieved in excellent yields in urea-choline chloride deep eutectic solvent (DES) as the most promising environmentally benign and cost-effective solvent under mild reaction condition. DES can protect various aromatic and aliphatic amines using Boc2O in good to excellent yields in short reaction times without any side products. Graphical abstract: [Figure not available: see fulltext.].

Efficient N-Boc protection of amines by a reusable heterogeneous solid acid nanocatalyst at room temperature

Veisi, Hojat,Sedrpoushan, Alireza,Ghazizadeh, Habibollah,Hemmati, Saba

, p. 1451 - 1461 (2016/04/26)

An efficient and rapid protocol for chemoselective N-Boc protection of various structurally different aryl, aliphatic, and heterocyclic amines is reported with (Boc)2O using mesoporous silica phenylsulfonic acid (SBA-15-Ph-SO3H) as a recyclable and heterogeneous solid acid nanocatalyst under solvent-free condition at ambient temperature. The catalyst can be easily recovered and reused for ten reaction cycles for protection of amines without considerable loss of activity. The advantages of this green method are simplicity, easy workup, chemoselectivity, short reaction time, and excellent yield.

Preparation, characterization and application of succinimidinium hydrogensulfate ([H-Suc]HSO4) as an efficient ionic liquid catalyst for the N-Boc protection of amines

Shirini, Farhad,Jolodar, Omid Goli,Seddighi, Mohadeseh,Borujeni, Hojatollah Takbiri

, p. 19790 - 19798 (2015/03/18)

In this work, succinimidinium hydrogensulfate ([H-Suc]HSO4), as a novel Bronsted acidic ionic liquid is prepared and characterized by studying its FT-IR, 1H NMR, 13C NMR, mass and SEM. This reagent can be used as an efficient catalyst for the N-Boc protection of amines at room temperature and neat conditions. This new method consistently has the advantages of excellent yields and short reaction times. Further, this ionic liquid can be recovered and reused for several times. This journal is

An "all-water" strategy for regiocontrolled synthesis of 2-aryl quinoxalines

Tanwar, Babita,Purohit, Priyank,Raju, Banothu Naga,Kumar, Dinesh,Kommi, Damodara N.,Chakraborti, Asit K.

, p. 11873 - 11883 (2015/02/19)

A new synthetic strategy of tandem N-aroylmethylation-nitro reduction-cyclocondensation has been developed for the first and generalized regioselective synthesis of 2-aryl quinoxalines adopting "all water chemistry." Water plays the critical role through

General solvent-free highly selective N-tert-butyloxycarbonylation strategy using protic ionic liquid as an efficient catalyst

Majumdar, Swapan,De, Jhinuk,Chakraborty, Ankita,Maiti, Dilip K.

, p. 24544 - 24550 (2014/07/07)

A simple, rapid and solvent-free protocol is described for the chemo-selective transformation of amines to tert-butyloxycarbonyl protected derivatives (NHBoc) using Boc2O and imidazolium trifluoroacetate protic ionic liquid (5-20 mol%). Unwanted side products such as isocyanate, urea or N,N-di-Boc were not detected. The scope of the protection strategy was successfully explored for substrate alcohols, phenols and thiol at elevated temperatures. Optically pure amino acids, amino acid esters and amino alcohols were efficiently converted to the corresponding N-Boc protected derivatives in excellent yields without racemization at the chiral center. The distinct advantages of this method are: operational simplicity, cleaner reaction, high selectivity, excellent yield, rapid reaction convergence, easy preparation and recyclability of the catalyst.

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