scholarly journals Short Syntheses of 1-Substituted Dibenzothiophenes and 3-Substituted Naphthothiophenes

2019 ◽  
Author(s):  
Erin N. Welsh ◽  
Emily K. Burke ◽  
Katherine Roberston ◽  
Alex Speed

<p>The 1-substituted dibenzothiophene motif is an unusual substitution pattern. We demonstrate a simple one-pot preparation of 1-lithiodibenzothiophene via a cascade of two benzyne additions and conversion to the aldehyde, boronic ester, and iodide. This work avoids the use of precious metals or tert-butyllithium and is shorter than existing routes to these compounds. We also report an improved route to the isomeric 3-substituted naphthothiophene scaffold. These protocols will allow rapid access to families of these two related heteroacenes.</p>

2019 ◽  
Author(s):  
Erin N. Welsh ◽  
Emily K. Burke ◽  
Katherine Roberston ◽  
Alex Speed

<p>The 1-substituted dibenzothiophene motif is an unusual substitution pattern. We demonstrate a simple one-pot preparation of 1-lithiodibenzothiophene via a cascade of two benzyne additions and conversion to the aldehyde, boronic ester, and iodide. This work avoids the use of precious metals or tert-butyllithium and is shorter than existing routes to these compounds. We also report an improved route to the isomeric 3-substituted naphthothiophene scaffold. These protocols will allow rapid access to families of these two related heteroacenes.</p>


2021 ◽  
Vol 19 (9) ◽  
pp. 2000-2007
Author(s):  
Erin N. Welsh ◽  
Katherine N. Robertson ◽  
Alexander W. H. Speed

A one-pot double benzyne cascade allows rapid access to 1-substituted dibenzothiophene derivatives, including cross-coupling partners and a chiral amine.


2014 ◽  
Vol 16 (9) ◽  
pp. 466-477 ◽  
Author(s):  
Ram Awatar Maurya ◽  
Praveen Reddy Adiyala ◽  
D. Chandrasekhar ◽  
Chada Narsimha Reddy ◽  
Jeevak Sopanrao Kapure ◽  
...  

2015 ◽  
Vol 68 (12) ◽  
pp. 1810 ◽  
Author(s):  
Andrew S. Eastabrook ◽  
Jonathan Sperry

Readily available 3-substituted indoles undergo a one-pot iridium-catalyzed triborylation at the C2, C5, and C7 sites. 1H NMR analysis indicates borylation at C2 and C7 occurs first (no monoborylated product is observed), with the third borylation occurring as a separate, distinct step that is sterically directed to C5 by a combination of the substituent at C3 and the boronate at C7. The resulting tetrasubstituted indoles possess a substitution pattern that is cumbersome to prepare using existing methods.


2019 ◽  
Vol 25 (1) ◽  
pp. 22-26 ◽  
Author(s):  
Seema Jain

Abstract7-Allylindolines are valuable synthons for designing biologically active molecular libraries. Lewis acid catalyzed amino-Claisen rearrangement provides a one pot synthetic entry to these heteroarenes. In this context, Zinc chloride (ZnCl2)–N,N-dimethylformamide system efficiently catalyzed amino-Claisen rearrangements of 1-N-allylindolines to 7-allylindolines. The rearrangement is influenced by stereoelectronic effects of substituents present in 1-N-allylindolines. The substrates containing electron donating functionalities underwent rearrangement at lower temperature than substrates with electron withdrawing functional groups. The regioselectivity of the process is governed by the substitution pattern on allyl moiety in 1-N-allylindoline as well as ZnCl2 catalyst loading in the reaction system.


Synthesis ◽  
2019 ◽  
Vol 52 (08) ◽  
pp. 1247-1252 ◽  
Author(s):  
Sumin Lee ◽  
Young Jin Jang ◽  
Erik J. T. Phipps ◽  
Honghui Lei ◽  
Tomislav Rovis

We report a three-component diamination of simple unactivated alkenes using an electrophilic nitrene source and amine nucleo­philes. The reaction provides rapid access to 1,2-vicinal diamines from terminal alkenes through a one-pot protocol. The transformation proceeds smoothly with excellent tolerance for a broad array of primary and secondary amines, affording the desired products in good yield and regioselectivity. The mechanism is proposed to proceed through a Rh(III)-catalyzed aziridination of alkenes with subsequent ring opening by primary or secondary amines.


2019 ◽  
Vol 4 (5) ◽  
pp. 1753-1756 ◽  
Author(s):  
Aansa Hanif ◽  
Aniqa Sardar ◽  
Meshari Alazmi ◽  
Haniya Tariq ◽  
Abdul‐Hamid Emwas ◽  
...  

2019 ◽  
Vol 9 (14) ◽  
pp. 2846 ◽  
Author(s):  
Gonçalo P. Rosa ◽  
Ana M. L. Seca ◽  
Maria do Carmo Barreto ◽  
Artur M. S. Silva ◽  
Diana C. G. A. Pinto

Chalcones and flavanones are isomeric structures and also classes of natural products, belonging to the flavonoid family. Moreover, their wide range of biological activities makes them key scaffolds for the synthesis of new and more efficient drugs. In this work, the synthesis of hydroxy and/or methoxychalcones was studied using less common bases, such as sodium hydride (NaH) and lithium bis(trimethylsilyl)amide (LiHMDS), in the aldol condensation. The results show that the use of NaH was more effective for the synthesis of 2′-hydroxychalcone derivatives, while LiHMDS led to the synthesis of polyhydroxylated chalcones in a one-pot process. During this study, it was also possible to establish the conditions that favor their isomerization into flavanones, allowing at the same time the synthesis of hydroxy and/or methoxyflavanones. The chalcones and flavanones obtained were evaluated to disclose their antioxidant, anticholinesterasic, antibacterial and antitumor activities. 2′,4′,4-Trihydroxychalcone was the most active compound in terms of antioxidant, anti-butyrylcholinesterase (IC50 26.55 ± 0.55 μg/mL, similar to control drug donepezil, IC50 28.94 ± 1.76 μg/mL) and antimicrobial activity. 4′,7-Dihydroxyflavanone presented dual inhibition, that is, the ability to inhibit both cholinesterases. 4′-Hydroxy-5,7-dimethoxyflavanone and 2′-hydroxy-4-methoxychalcone were the compounds with the best antitumor activity. The substitution pattern and the biological assay results allowed the establishment of some structure/activity relationships.


2015 ◽  
Vol 51 (45) ◽  
pp. 9354-9357 ◽  
Author(s):  
Suqin Ci ◽  
Zhenhai Wen ◽  
Shun Mao ◽  
Yang Hou ◽  
Shumao Cui ◽  
...  

Nanohybrids of nitrogen-doped graphene loading Co nanoparticles exhibit excellent electrocatalytic performance for both glucose oxidation reaction and oxygen reduction reaction.


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