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523-41-1

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523-41-1 Usage

Description

2-Fluorophenanthrene is a chemical compound that belongs to the group of polycyclic aromatic hydrocarbons (PAHs). It is a fluoro-substituted phenanthrene molecule, with the fluorine atom attached to one of the carbon atoms in the aromatic ring. This colorless solid is insoluble in water but soluble in organic solvents, and it serves as a building block in chemical synthesis.

Uses

Used in Pharmaceutical Development:
2-Fluorophenanthrene is used as a key intermediate in the synthesis of various pharmaceuticals, contributing to the development of new drugs due to its unique chemical properties.
Used in Agrochemical Production:
In the agrochemical industry, 2-Fluorophenanthrene is utilized as a precursor in the creation of novel agrochemicals, potentially enhancing crop protection and yield.
Used in Materials Science:
2-Fluorophenanthrene plays a role in materials science, where it is employed in the synthesis of advanced materials with specific properties, such as those used in electronic devices or specialty coatings.

Check Digit Verification of cas no

The CAS Registry Mumber 523-41-1 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 5,2 and 3 respectively; the second part has 2 digits, 4 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 523-41:
(5*5)+(4*2)+(3*3)+(2*4)+(1*1)=51
51 % 10 = 1
So 523-41-1 is a valid CAS Registry Number.
InChI:InChI=1/C14H9F/c15-12-7-8-14-11(9-12)6-5-10-3-1-2-4-13(10)14/h1-9H

523-41-1Downstream Products

523-41-1Relevant articles and documents

Br?nsted Acid-Catalyzed Carbonyl-Olefin Metathesis: Synthesis of Phenanthrenes via Phosphomolybdic Acid as a Catalyst

Chen, Yi,Liu, Di,Wang, Rui,Xu, Li,Tan, Jingyao,Shu, Mao,Tian, Lingfeng,Jin, Yuan,Zhang, Xiaoke,Lin, Zhihua

, p. 351 - 362 (2022/01/03)

Compared with the impressive achievements of catalytic carbonyl-olefin metathesis (CCOM) mediated by Lewis acid catalysts, exploration of the CCOM through Br?nsted acid-catalyzed approaches remains quite challenging. Herein, we disclose a synthetic protocol for the construction of a valuable polycycle scaffold through the CCOM with the inexpensive, nontoxic phosphomolybdic acid as a catalyst. The current annulations could realize carbonyl-olefin, carbonyl-alcohol, and acetal-alcohol in situ CCOM reactions and feature mild reaction conditions, simple manipulation, and scalability, making this strategy a promising alternative to the Lewis acid-catalyzed COM reaction.

Further insight into the photochemical behavior of 3-aryl-N-(arylsulfonyl)propiolamides: tunable synthetic route to phenanthrenes

Chen, Ming,Zhao, Xinxin,Yang, Chao,Wang, Yanpei,Xia, Wujiong

, p. 12022 - 12026 (2017/03/01)

Reported herein is further insight into the photochemical behaviour of 3-aryl-N-(arylsulfonyl)-propiolamides, which provides a straightforward way to access meaningful phenanthrenes. Mechanistic investigation indicated that aryl migration, C-C coupling, 1,3-hydrogen shift, desulfonylation and elimination were involved in the process. Moreover, this protocol allowed for scale-up using a flow reactor.

A combined experimental and computational study on the cycloisomerization of 2-ethynylbiaryls catalyzed by dicationic arene ruthenium complexes

Yamamoto, Yoshihiko,Matsui, Kazuma,Shibuya, Masatoshi

supporting information, p. 7245 - 7255 (2015/05/05)

Ruthenium-catalyzed cycloisomerization of 2-ethynylbiaryls was investigated to identify an optimal ruthenium catalyst system. A combination of [η6-(p-cymene)RuCl2(PR3)] and two equivalents of AgPF6 effectively converted 2-ethynylbiphenyls into phenanthrenes in chlorobenzene at 120 °C over 20 h. Moreover, 2-ethynylheterobiaryls were found to be favorable substrates for this ruthenium catalysis, thus achieving the cycloisomerization of previously unused heterocyclic substrates. Moreover, several control experiments and DFT calculations of model complexes were performed to propose a plausible reaction mechanism.

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