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1,2-Dihydronaphtho[2,1-b]furan is a heterocyclic organic compound characterized by a unique structure that fuses a dihydronapthalene ring with a furan ring. 1,2-dihydronaphtho<2,1-b>furan is of interest in organic chemistry due to its potential applications in the synthesis of various pharmaceuticals and agrochemicals, as well as its role as a building block in the creation of more complex molecules. The presence of both aromatic and heterocyclic moieties in its structure endows it with a range of chemical properties, making it a versatile component in organic synthesis. Its chemical formula is C11H10O, reflecting the combination of carbon, hydrogen, and oxygen atoms that define its molecular structure. The compound's name, derived from its structure, indicates the fusion of a naphthalene ring with a furan ring, with the double bond in the naphthalene ring reduced to form a dihydro derivative.

7193-19-3

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7193-19-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 7193-19-3 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 7,1,9 and 3 respectively; the second part has 2 digits, 1 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 7193-19:
(6*7)+(5*1)+(4*9)+(3*3)+(2*1)+(1*9)=103
103 % 10 = 3
So 7193-19-3 is a valid CAS Registry Number.

7193-19-3Downstream Products

7193-19-3Relevant academic research and scientific papers

Synthesis of peri-cyclobutarenes by thermolysis of [methoxy(trimethylsilyl)methyl]arenes

Engler, Thomas A.,Shechter, Harold

, p. 4247 - 4254 (2007/10/03)

[Methoxy(trimethylsilyl)methyl]arenes are readily prepared by reactions of chlorotrimethylsilane with (α-methoxy)arenylmethyllithium reagents as obtained from (methoxymethyl)arenes and t-BuLi. The [methoxy(trimethylsilyl)methyl]arenes eliminate methoxytrimethylsilane at 525-675 °C/0.05-0.10 mm to yield peri-cyclobutarenes as derived from arenylcarbenes. Of importance is the fact that the initial arenylcarbenes generated insert into adjacent peri C-H bonds and/or isomerize to other arenylcarbenes that insert into their peri C-H bonds to give peri- cyclobutarenes. Thus, flash-vacuum pyrolysis of 1- [methoxy(trimethylsilyl)methyl]naphthalene (13) at 575-675 °C/0.05-0.10 mm yields 1H-cyclobuta[de]naphthalene (6, up to 39%) in practical quantities. 2- [Methoxy(trimethylsilyl)methyl]naphthalene (23) also affords 6 as a major thermolysis product. At 510 °C/0.05-0.10 mm 4-methoxy-1- [methoxy(trimethylsilyl)methyl]naphthalene (29) decomposes to 4-methoxy-1H- cyclobuta[de]naphthalene (31, 46%). Under similar conditions, 2-methoxy-1- [methoxy(trimethylsilyl)methyl]naphthalene (33) converts to 1,2- dihydronaphtho[2,1-b]furan (35, 64%) and naphtho[2,1-b]furan (36, 31%), presumably by insertion of 2-methoxy-1-naphthylcarbene (34) into a C-H bond of its o-methoxy group and then dehydrogenation of the resultant dihydrofuran. Further, 1-[methoxy(trimethylsilyl)methyl]-6-methylnaphthalene (39) pyrolyzes (510 °C/0.10-0.20 mm) to 6-methyl-1-naphthylcarbene (40), which isomerizes in part to 7-methyl-1-naphthylcarbene (49); carbenes 40 and 49 then undergo peri C-H insertion to give 3-methyl-1H- cyclobuta[de]naphthalene (41) and 2-methyl-1H-cyclobuta[de]naphthalene (42) in an 8:1 ratio and a combined yield of 44%. The pyrolytic method is particularly valuable for preparing higher peri single carbon atom bridged arenes such as 4H-cyclobuta[jk]phenanthrene (53, 65%) and 3H- cyclobuta[cd]pyrene (59, 86%).

PERI-METHANOARENES BY THERMOLYSIS OF TRIMETHYLSILANES

Engler, T. A.,Shechter, H.

, p. 2715 - 2718 (2007/10/02)

Practical syntheses of varied peri-methanoarenes have been developed.

Synthesis of Dihydrobenzofurans from Phenolic Mannich Bases and their Quaternized Derivatives

Blade-Font, Artur,Rocabayera, Teodoro de Mas

, p. 841 - 848 (2007/10/02)

Reaction of dimethylsulphoxonium methylide with quaternized derivatives of phenolic Mannich bases, and in certain cases with the bases themselves, constitutes a useful synthesis of dihydrobenzofurans.On the other hand treatment of those same quaternized derivatives with diazomethane may be a useful alternative procedure for the preparation of coumarans with base-sensitive groups.

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