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6228-47-3

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6228-47-3 Usage

Chemical Properties

White crystalline powder

Uses

Different sources of media describe the Uses of 6228-47-3 differently. You can refer to the following data:
1. n-Propyltriphenylphosphonium Bromide, is an analogue of phosphonium, acting as reversible inhibitors of cholinesterases of different animals. It has also been shown to be part of Phosphonium salts, having antiviral activity against influenza virus A.
2. suzuki reaction

Check Digit Verification of cas no

The CAS Registry Mumber 6228-47-3 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 6,2,2 and 8 respectively; the second part has 2 digits, 4 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 6228-47:
(6*6)+(5*2)+(4*2)+(3*8)+(2*4)+(1*7)=93
93 % 10 = 3
So 6228-47-3 is a valid CAS Registry Number.
InChI:InChI=1/C21H22P.BrH/c1-2-18-22(19-12-6-3-7-13-19,20-14-8-4-9-15-20)21-16-10-5-11-17-21;/h3-17H,2,18H2,1H3;1H/q+1;/p-1

6228-47-3 Well-known Company Product Price

  • Brand
  • (Code)Product description
  • CAS number
  • Packaging
  • Price
  • Detail
  • TCI America

  • (P1200)  Triphenylpropylphosphonium Bromide  >98.0%(HPLC)(T)

  • 6228-47-3

  • 25g

  • 280.00CNY

  • Detail
  • TCI America

  • (P1200)  Triphenylpropylphosphonium Bromide  >98.0%(HPLC)(T)

  • 6228-47-3

  • 500g

  • 2,480.00CNY

  • Detail
  • Alfa Aesar

  • (A12968)  (1-Propyl)triphenylphosphonium bromide, 99%   

  • 6228-47-3

  • 50g

  • 480.0CNY

  • Detail
  • Alfa Aesar

  • (A12968)  (1-Propyl)triphenylphosphonium bromide, 99%   

  • 6228-47-3

  • 250g

  • 1328.0CNY

  • Detail
  • Alfa Aesar

  • (A12968)  (1-Propyl)triphenylphosphonium bromide, 99%   

  • 6228-47-3

  • 1000g

  • 4515.0CNY

  • Detail
  • Aldrich

  • (131563)  Propyltriphenylphosphoniumbromide  98%

  • 6228-47-3

  • 131563-25G

  • 379.08CNY

  • Detail

6228-47-3SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 12, 2017

Revision Date: Aug 12, 2017

1.Identification

1.1 GHS Product identifier

Product name Propyltriphenylphosphonium bromide

1.2 Other means of identification

Product number -
Other names triphenyl(propyl)phosphanium,bromide

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:6228-47-3 SDS

6228-47-3Relevant articles and documents

Two Are Better Than One: A Design Principle for Ultralong-Persistent Luminescence of Pure Organics

Alam, Parvej,Leung, Nelson L. C.,Liu, Junkai,Cheung, Tsz Shing,Zhang, Xuepeng,He, Zikai,Kwok, Ryan T. K.,Lam, Jacky W. Y.,Sung, Herman H. Y.,Williams, Ian D.,Chan, Christopher C. S.,Wong, Kam Sing,Peng, Qian,Tang, Ben Zhong

, (2020/05/06)

Because of their innate ability to store and then release energy, long-persistent luminescence (LPL) materials have garnered strong research interest in a wide range of multidisciplinary fields, such as biomedical sciences, theranostics, and photonic devices. Although many inorganic LPL systems with afterglow durations of up to hours and days have been reported, organic systems have had difficulties reaching similar timescales. In this work, a design principle based on the successes of inorganic systems to produce an organic LPL (OLPL) system through the use of a strong organic electron trap is proposed. The resulting system generates detectable afterglow for up to 7 h, significantly longer than any other reported OLPL system. The design strategy demonstrates an easy methodology to develop organic long-persistent phosphors, opening the door to new OLPL materials.

N-Heterocyclic Carbene Iron(III) Porphyrin-Catalyzed Intramolecular C(sp3)–H Amination of Alkyl Azides

Shing, Ka-Pan,Liu, Yungen,Cao, Bei,Chang, Xiao-Yong,You, Tingjie,Che, Chi-Ming

supporting information, p. 11947 - 11951 (2018/09/11)

Metal-catalyzed intramolecular C?H amination of alkyl azides constitutes an appealing approach to alicyclic amines; challenges remain in broadening substrate scope, enhancing regioselectivity, and applying the method to natural product synthesis. Herein we report an iron(III) porphyrin bearing axial N-heterocyclic carbene ligands which catalyzes the intramolecular C(sp3)–H amination of a wide variety of alkyl azides under microwave-assisted and thermal conditions, resulting in selective amination of tertiary, benzylic, allylic, secondary, and primary C?H bonds with up to 95 % yield. 14 out of 17 substrates were cyclized selectively at C4 to give pyrrolidines. The regioselectivity at C4 or C5 could be tuned by modifying the reactivity of the C5–H bond. Mechanistic studies revealed a concerted or a fast re-bound mechanism for the amination reaction. The reaction has been applied to the syntheses of tropane, nicotine, cis-octahydroindole, and leelamine derivatives.

Design, synthesis and SAR study of novel sulfonylureas containing an alkenyl moiety

Wei, Wei,Cheng, Dandan,Liu, Jingbo,Li, Yuxin,Ma, Yi,Li, Yonghong,Yu, Shujing,Zhang, Xiao,Li, Zhengming

, p. 8356 - 8366 (2016/09/09)

A series of sulfonylurea compounds was designed and synthesized via introducing an alkenyl moiety into the aryl-5 position and most title compounds exhibited enhanced antifungal activities and limited herbicidal activities compared with chlorsulfuron. Then, a CoMSIA calculation for antifungal activities was carried out to establish a 3D-QSAR model in which a cross-validated q2 of 0.585 and a correlation coefficient r2 of 0.989 were obtained. The derived model revealed that hydrophobic and electrostatic fields were the two most important factors for antifungal activity. Structure optimization was performed according to the CoMSIA model and compound 9z was found to be as potent as chlorothalonil in vitro against C. cornigerum, the pathogen of the wheat sharp eyespot disease. In order to study the fungicidal mechanism, 9z was successfully docked into yeast AHAS using a flexible molecular docking method and the resulting binding pattern was similar to that of chlorimuron-ethyl, indicating that the antifungal activity of compounds 9 was probably due to the inhibition of fungal AHAS.

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