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91.
Synthesis of Furoxans (1,2,5‐oxadiazole 2‐oxides) from Styrenes and Nitrosonium Tetrafluoroborate in Non‐Acidic Media and Mechanistic Study
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Ryosuke Matsubara Akihiro Ando Yuta Saeki Kazuo Eda Naoki Asada Tomoaki Tsutsumi Yong Soon Shin Masahiko Hayashi 《Journal of heterocyclic chemistry》2016,53(4):1094-1105
Diverse furoxans (1,2,5‐oxadiazole 2‐oxides) were synthesized from the corresponding styrenes using nitrosonium tetrafluoroborate as the nitrosation reagent in pyridine (basic media) or dichloromethane (neutral media). Acid‐sensitive functional groups were tolerated under these conditions. The probable reaction mechanism was elucidated. The experimental results support an ionic reaction pathway in contrast to the conventional acidic conditions with a radical mechanism. 相似文献
92.
Prof. Dr. Haruhiko Fuwa Naoya Yamagata Yuta Okuaki Yuya Ogata Asami Saito Prof. Dr. Makoto Sasaki 《Chemistry (Weinheim an der Bergstrasse, Germany)》2016,22(20):6815-6829
We have described in detail the total synthesis of both the proposed and correct structures of (?)‐lyngbyaloside B, which facilitated the elucidation of the complete stereostructure of this natural product. Our study began with the total synthesis of 13‐demethyllyngbyaloside B, in which an esterification/ring‐closing metathesis (RCM) strategy was successfully used for the efficient construction of the macrocycle. We also established reliable methods for the introduction of the conjugated diene side chain and the l ‐rhamnose residue onto the macrocyclic framework. However, the esterification/RCM strategy proved ineffective for the parent natural product because of the difficulties in acylating the sterically encumbered C‐13 tertiary alcohol; macrolactionization of a seco‐acid was also extensively investigated under various conditions without success. We finally completed the total synthesis of the proposed structure of (?)‐lyngbyaloside B by means of a macrolactonization that involves an acyl ketene as the reactive species. However, the NMR spectroscopic data of our synthetic material did not match those of the authentic material, which indicated that the proposed structure must be re‐examined. Inspection of the NMR spectroscopic data of the natural product and molecular mechanics calculations led us to postulate that the configuration of the C‐10, C‐11, and C‐13 stereogenic centers had been incorrectly assigned in the proposed structure. Finally, our revised structure of (?)‐lyngbyaloside B was unambiguously verified through total synthesis. 相似文献
93.
Enantioselective Organocatalytic Construction of Spiroindane Derivatives by Intramolecular Friedel–Crafts‐Type 1,4‐Addition
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Dr. Keisuke Yoshida Yukihiro Itatsu Yuta Fujino Hiroki Inoue Prof. Dr. Ken‐ichi Takao 《Angewandte Chemie (International ed. in English)》2016,55(23):6734-6738
The highly enantioselective organocatalytic construction of spiroindanes containing an all‐carbon quaternary stereocenter by intramolecular Friedel–Crafts‐type 1,4‐addition is described. The reaction was catalyzed by a cinchonidine‐based primary amine and accelerated by water and p‐bromophenol. A variety of spiro compounds containing quaternary stereocenters were obtained with excellent enantioselectivity (up to 95 % ee). The reaction was applied to the asymmetric formal synthesis of the spirocyclic natural products (?)‐cannabispirenones A and B. 相似文献
94.
Regioselective Dichlorination of a Non‐Activated Aliphatic Carbon Atom and Phenolic Bismethylation by a Multifunctional Fungal Flavoenzyme
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Pranatchareeya Chankhamjon Dr. Yuta Tsunematsu Dr. Mie Ishida‐Ito Yuzuka Sasa Florian Meyer Dr. Daniela Boettger‐Schmidt Barbara Urbansky Klaus‐Dieter Menzel Dr. Kirstin Scherlach Prof. Dr. Kenji Watanabe Prof. Dr. Christian Hertweck 《Angewandte Chemie (International ed. in English)》2016,55(39):11955-11959
The regioselective functionalization of non‐activated carbon atoms such as aliphatic halogenation is a major synthetic challenge. A novel multifunctional enzyme catalyzing the geminal dichlorination of a methyl group was discovered in Aspergillus oryzae (Koji mold), an important fungus that is widely used for Asian food fermentation. A biosynthetic pathway encoded on two different chromosomes yields mono‐ and dichlorinated polyketides (diaporthin derivatives), including the cytotoxic dichlorodiaporthin as the main product. Bioinformatic analyses and functional genetics revealed an unprecedented hybrid enzyme (AoiQ) with two functional domains, one for halogenation and one for O‐methylation. AoiQ was successfully reconstituted in vivo and in vitro, unequivocally showing that this FADH2‐dependent enzyme is uniquely capable of the stepwise gem‐dichlorination of a non‐activated carbon atom on a freestanding substrate. Genome mining indicated that related hybrid enzymes are encoded in cryptic gene clusters in numerous ecologically relevant fungi. 相似文献
95.
Dr. Tsuyoshi Yamamoto Dr. Yuta Tsunematsu Dr. Kodai Hara Dr. Tomohiro Suzuki Dr. Shinji Kishimoto Prof. Dr. Hirokazu Kawagishi Prof. Dr. Hiroshi Noguchi Prof. Dr. Hiroshi Hashimoto Prof. Dr. Yi Tang Prof. Dr. Kinya Hotta Prof. Dr. Kenji Watanabe 《Angewandte Chemie (International ed. in English)》2016,55(21):6207-6210
Geometric isomerization can expand the scope of biological activities of natural products. The observed chemical diversity among the pseurotin‐type fungal secondary metabolites is in part generated by a trans to cis isomerization of an olefin. In vitro characterizations of pseurotin biosynthetic enzymes revealed that the glutathione S‐transferase PsoE requires participation of the bifunctional C‐methyltransferase/epoxidase PsoF to complete the trans to cis isomerization of the pathway intermediate presynerazol. The crystal structure of the PsoE/glutathione/presynerazol complex indicated stereospecific glutathione–presynerazol conjugate formation is the principal function of PsoE. Moreover, PsoF was identified to have an additional, unexpected oxidative isomerase activity, thus making it a trifunctional enzyme which is key to the complexity generation in pseurotin biosynthesis. Through the study, we identified a novel mechanism of accomplishing a seemingly simple trans to cis isomerization reaction. 相似文献
96.
97.
The synthesis of unsymmetric functionalized pentacenes from 1,4-anthraquinones and functionalized isobenzofurans, which were prepared by transformation via C-H bond activation, was successfully accomplished. Examples of the synthesis of pentacenes with functional groups at the 5-position are still rare. These obtained functionalized pentacenes are highly soluble in hexane, toluene, and THF. 相似文献
98.
Yuta Ito Dr. Masafumi Ueda Dr. Norihiko Takeda Prof. Dr. Okiko Miyata 《Chemistry (Weinheim an der Bergstrasse, Germany)》2016,22(8):2616-2619
A novel reductive Fischer indolization of readily available N‐aryl conjugated hydrazones with tert‐butyl iodide has been developed. In this reaction, tert‐butyl iodide is used as anhydrous HI source, and the generated HI acts as a Brønsted acid and a reducing agent. This operationally simple method allows access to various indole derivatives. Furthermore, the procedure can be applied to the synthesis of biologically active compounds. 相似文献
99.
100.
Yuta Kubo;Momoko Deura;Yasuhiro Yamada;Takashi Fujii;Tsutomu Araki; 《physica status solidi b》2024,261(11):2400014
ScAlMgO4 (SAM) has attracted considerable attention as a substrate for growing InGaN template layers owing to its lattice matching with In0.17Ga0.83N. Furthermore, radio-frequency plasma-assisted molecular beam epitaxy (RF-MBE) can be utilized to grow (In)GaN directly on SAM substrates because the growth is conducted at relatively low temperatures without reactive gases. This prevents the diffusion and desorption of the constituent elements of the SAM substrate. In this study, the substrate-temperature dependence of the direct growth of InGaN on SAM substrates is investigated through RF-MBE. In droplets are formed below 600 °C, whereas, the In content of the InGaN crystal decreases rapidly, and the surface roughness increases at ≈650 °C. These results are attributed to the acceleration of In desorption at higher temperatures. The improvement in crystal coherency moderates above 600 °C. Therefore, a nearly lattice-matched In0.18Ga0.82N film is grown at an optimal temperature of 600 °C by adjusting the group-III metal fluxes. The resulting film is continuous and relatively flat, with no droplets. The dislocation density with screw component is one order of magnitude lower than that of the lattice-mismatched InGaN. The dislocation density of the InGaN film is comparable to that of a film grown by metal-organic vapor-phase epitaxy. 相似文献