A convenient stereoselective access to novel 1,2,4-triazepan-3-ones/thiones via reduction or reductive alkylation of 7-membered cyclic semicarbazones and thiosemicarbazones
文献情報
Anastasia A. Fesenko, Mikhail S. Grigoriev, Anatoly D. Shutalev
A general stereoselective approach to previously unknown 1,2,4-triazepane-3-thiones/ones based on reduction or reductive alkylation of readily available 2,4,5,6-tetrahydro-3H-1,2,4-triazepine-3-thiones/ones has been developed. The approach involved the treatment of tetrahydrotriazepines with sodium cyanoborohydride in MeOH at pH 3 or with sodium borohydride and excess of carboxylic acid in THF to give 1-unsubstituted or 1-alkyl-substituted 1,2,4-triazepane-3-thiones/ones, respectively. The latter were also prepared by the reaction of 1-unsubstituted 1,2,4-triazepane-3-thiones/ones with sodium cyanoborohydride and an aldehyde in MeOH in the presence of AcOH. The stereochemistry of the triazepane-3-thiones/ones obtained was established in DMSO solution and in the solid state using NMR spectroscopy and single-crystal X-ray diffraction. These data and DFT B3LYP/6-311++G(d,p) calculations show that the gauche effect plays a significant role in stabilization of preferred conformations of 1-unsubstituted 1,2,4-triazepane-3-thiones/ones.
関連文献
A nickel doped perovskite catalyst for reforming methane rich biogas with minimal carbon deposition
Samuel E. Evans, John Z. Staniforth, Richard J. Darton, R. Mark Ormerod
DOI: 10.1039/C4GC00782D
Hydrogenation of levulinic acid to γ-valerolactone by Ni and MoOx co-loaded carbon catalysts
Shota Kanno, Kenichi Kon
DOI: 10.1039/C4GC00735B
Towards the rational biosynthesis of substituted phenazines and phenoxazinones by laccases
M. Conceição Oliveira, Lígia O. Martins
DOI: 10.1039/C4GC00901K
A solar light-driven, eco-friendly protocol for highly enantioselective synthesis of chiral alcohols via photocatalytic/biocatalytic cascades
Sumit Choudhury, Jin-Ook Baeg, No-Joong Park, Rajesh K. Yadav
DOI: 10.1039/C4GC00885E
Furfural from corn stover hemicelluloses. A mineral acid-free approach
Hilda Gómez Bernal, Luca Bernazzani
DOI: 10.1039/C4GC00450G
Combination of Pd/C and Amberlyst-15 in a single reactor for the acid/hydrogenating catalytic conversion of carbohydrates to 5-hydroxy-2,5-hexanedione
Fei liu, Maïté Audemar, Karine De Oliveira Vigier, Jean-Marc Clacens, Floryan De Campo, François Jérôme
DOI: 10.1039/C4GC01158A
Mesoporous carbon–silica solid acid catalysts for producing useful bio-products within the sugar-platform of biorefineries
Patrícia A. Russo, Margarida M. Antunes, Patrícia Neves, Paul V. Wiper, Enza Fazio, Fortunato Neri, Francesco Barreca, Luís Mafra, Martyn Pillinger, Nicola Pinna, Anabela A. Valente
DOI: 10.1039/C4GC01037J
Tunable thermomorphism and applications of ionic liquid analogues of Girard's reagents
Marijana Blesic, H. Q. Nimal Gunaratne, Johan Jacquemin, Peter Nockemann, Sonia Olejarz, Kenneth R. Seddon, Christopher R. Strauss
DOI: 10.1039/C4GC01159G
こちらもおすすめ
6-苄基-6,7-二氢-5H-吡咯并3,4-b吡啶とは何ですか?
6-苄基-6,7-二氢-5H-吡咯并3,4-b吡啶は、CAS番号109966-30-5の化合物です。これは、6-ベンジル基を持つ6,7-二氢-5H-吡咯並みの化...
半硫酸奎宁单水水合物はどのように保存すればよいですか?
半硫酸奎宁单水水合物は、乾燥した涼しい場所に保管し、直射日光や湿気を避ける必要があります。保存温度は常温(15〜25℃)が適切で、湿度は40%以下を維持すること...
D-核糖-5-リン酸二ナトリウムとは何ですか?
D-核糖-5-リン酸二ナトリウムは、CAS番号18265-46-8を有する化合物で、D-核糖の5位付加部位にリン酸基が結合した化合物です。この化合物は、水溶性で...
3-乙酰基-4-羟基喹啉-2(1H)-酮はどのように合成されますか?
3-乙酰基-4-羟基喹啉-2(1H)-酮は、ハイドロキノンと酢酸アセトイルアミドのアミド化反応により合成されます。この反応は塩基触媒を用いて行われ、選択性は良好...
5-溴-4-甲基-1H-吲唑とは何ですか?
5-溴-4-甲基-1H-吲唑は、CAS番号1082041-34-6の化学物質で、化学式はC10H9BrNです。この化合物は淡黄色の結晶性粉末で、吸湿性があります...
3-(4メトキシフェニル)オキテナン-3カーボイル酸の代替品はありますか?
3-(4メトキシフェニル)オキテナン-3カーボイル酸の代替品は、その用途により異なりますが、例えば4-(メトキシフェニル)オキテナン-3カーボイル酸や、他のオキ...
3-イリドオキシピロロ[2,3-b]ピリジン-5-カルボキシlic酸は安全ですか?
3-イリドオキシピロロ[2,3-b]ピリジン-5-カルボキシlic酸は危険な化合物ではありませんが、適切な手袋や保護眼鏡の使用を推奨します。誤って摂取または接触...
3-氟-4- iodobenolを取り扱う際の実験室安全事項は何ですか?
3-氟-4- iodobenolは可燃性を有し、強力な反応性を持つため、取り扱いには注意が必要です。PPE(個人保護具)の着用、ドラフトチャンバーの使用、漏洩時...
掲載誌
Organic & Biomolecular Chemistry

Organic & Biomolecular Chemistry (OBC) publishes original and high impact research and reviews in organic chemistry. We welcome research that shows new or significantly improved protocols or methodologies in total synthesis, synthetic methodology or physical and theoretical organic chemistry as well as research that shows a significant advance in the organic chemistry or molecular design aspects of chemical biology, catalysis, supramolecular and macromolecular chemistry, theoretical chemistry, mechanism-oriented physical organic chemistry, medicinal chemistry or natural products. Articles published in the journal should report new work which makes a highly-significant impact in the field. Routine and incremental work is generally not suitable for publication in the journal. More details about key areas of our scope are below. In all cases authors should include in their article clear rationale for why their research has been carried out.














