The Experts below are selected from a list of 27 Experts worldwide ranked by ideXlab platform
A. M. Van Leusen - One of the best experts on this subject based on the ideXlab platform.
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APPLICATION OF S-(+)-3-HYDROXYTETRAHYDROFURAN IN ASYMMETRIC-SYNTHESIS OF S-(+)-Atrolactic Acid
Indian Journal of Chemistry Section B-organic Chemistry Including Medicinal Chemistry, 1994Co-Authors: Vk Tandon, [no Value] Agarwal, A. M. Van LeusenAbstract:S-(+)-3-Hydroxytetrahydrofuran (1) on reaction with phenylglyoxallyl chloride (2) forms S-(+)-3-tetrahydrofuranyl benzoyformate (3) in 88% yield. Further reaction of the alpha-ketoester 3 with MeLi at - 95 degrees C followed by basic hydrolysis results in asymmetric synthesis of S-(+)-Atrolactic Acid (4) (e e 20%).
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application of s 3 hydroxytetrahydrofuran in asymmetric synthesis of s Atrolactic Acid
Indian Journal of Chemistry Section B-organic Chemistry Including Medicinal Chemistry, 1994Co-Authors: Vk Tandon, A. M. Van LeusenAbstract:S-(+)-3-Hydroxytetrahydrofuran (1) on reaction with phenylglyoxallyl chloride (2) forms S-(+)-3-tetrahydrofuranyl benzoyformate (3) in 88% yield. Further reaction of the alpha-ketoester 3 with MeLi at - 95 degrees C followed by basic hydrolysis results in asymmetric synthesis of S-(+)-Atrolactic Acid (4) (e e 20%).
Donghua Zhang - One of the best experts on this subject based on the ideXlab platform.
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the cerium zirconium binary oxide as an efficient catalyst for oxidation of α methylstyrene oxide into Atrolactic Acid
Catalysis Letters, 2020Co-Authors: Benhua Huang, Ruixia Gao, Cheng Pan, Chao Fan, Xin Jia, Wanli Pan, Yang Sun, Donghua ZhangAbstract:The Atrolactic Acid is an important intermediate for synthesis of non-steroidal anti-inflammatory pharmaceuticals, and meanwhile the traditional synthesis of Atrolactic Acid demands harsh conditions, lengthy steps, or big power consumption. In order to overcome these drawbacks, a series of Ce–Zr binary oxides are first developed as catalysts for oxidation of α-methylstyrene oxide into Atrolactic Acid. Catalytic results reveal these catalysts have high activity and recycling potential. This work shows a new method for preparation of Atrolactic Acid, which could be carried out under benign conditions, providing satisfactory outputs.
Vk Tandon - One of the best experts on this subject based on the ideXlab platform.
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APPLICATION OF S-(+)-3-HYDROXYTETRAHYDROFURAN IN ASYMMETRIC-SYNTHESIS OF S-(+)-Atrolactic Acid
Indian Journal of Chemistry Section B-organic Chemistry Including Medicinal Chemistry, 1994Co-Authors: Vk Tandon, [no Value] Agarwal, A. M. Van LeusenAbstract:S-(+)-3-Hydroxytetrahydrofuran (1) on reaction with phenylglyoxallyl chloride (2) forms S-(+)-3-tetrahydrofuranyl benzoyformate (3) in 88% yield. Further reaction of the alpha-ketoester 3 with MeLi at - 95 degrees C followed by basic hydrolysis results in asymmetric synthesis of S-(+)-Atrolactic Acid (4) (e e 20%).
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application of s 3 hydroxytetrahydrofuran in asymmetric synthesis of s Atrolactic Acid
Indian Journal of Chemistry Section B-organic Chemistry Including Medicinal Chemistry, 1994Co-Authors: Vk Tandon, A. M. Van LeusenAbstract:S-(+)-3-Hydroxytetrahydrofuran (1) on reaction with phenylglyoxallyl chloride (2) forms S-(+)-3-tetrahydrofuranyl benzoyformate (3) in 88% yield. Further reaction of the alpha-ketoester 3 with MeLi at - 95 degrees C followed by basic hydrolysis results in asymmetric synthesis of S-(+)-Atrolactic Acid (4) (e e 20%).
Benhua Huang - One of the best experts on this subject based on the ideXlab platform.
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the cerium zirconium binary oxide as an efficient catalyst for oxidation of α methylstyrene oxide into Atrolactic Acid
Catalysis Letters, 2020Co-Authors: Benhua Huang, Ruixia Gao, Cheng Pan, Chao Fan, Xin Jia, Wanli Pan, Yang Sun, Donghua ZhangAbstract:The Atrolactic Acid is an important intermediate for synthesis of non-steroidal anti-inflammatory pharmaceuticals, and meanwhile the traditional synthesis of Atrolactic Acid demands harsh conditions, lengthy steps, or big power consumption. In order to overcome these drawbacks, a series of Ce–Zr binary oxides are first developed as catalysts for oxidation of α-methylstyrene oxide into Atrolactic Acid. Catalytic results reveal these catalysts have high activity and recycling potential. This work shows a new method for preparation of Atrolactic Acid, which could be carried out under benign conditions, providing satisfactory outputs.
Ruixia Gao - One of the best experts on this subject based on the ideXlab platform.
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the cerium zirconium binary oxide as an efficient catalyst for oxidation of α methylstyrene oxide into Atrolactic Acid
Catalysis Letters, 2020Co-Authors: Benhua Huang, Ruixia Gao, Cheng Pan, Chao Fan, Xin Jia, Wanli Pan, Yang Sun, Donghua ZhangAbstract:The Atrolactic Acid is an important intermediate for synthesis of non-steroidal anti-inflammatory pharmaceuticals, and meanwhile the traditional synthesis of Atrolactic Acid demands harsh conditions, lengthy steps, or big power consumption. In order to overcome these drawbacks, a series of Ce–Zr binary oxides are first developed as catalysts for oxidation of α-methylstyrene oxide into Atrolactic Acid. Catalytic results reveal these catalysts have high activity and recycling potential. This work shows a new method for preparation of Atrolactic Acid, which could be carried out under benign conditions, providing satisfactory outputs.