网络赌场gcgc 6-澳门网络赌场试赌_百家乐游戏开户网址_全讯网 全 (中国)·官方网站

Challenge conventions.

A continuous quest for a better world.

Happenings at WZU

Dr. Qian Pengcheng from the College of Chemistry & Materials Engineering published an article in Nature Catalysis

Release time: 2021-02-24

The article written by Dr. Qian Pengcheng from the College of Chemistry & Materials Engineering as the first corresponding author entitled “Gold-catalysed asymmetric net addition of unactivated propargylic C–H bonds to tethered aldehydes” was published in Nature·Catalysis (DOI: 10.1038/s41929-020-00569-8).

This article studies the asymmetry of aldehydes. The asymmetric propargyl alcoholization of aldehydes can generate various chiral allyl alcohol, which is a very important reaction process in the field of organic chemistry. In such asymmetric synthesis processes, it is necessary to bond to Si, B, Al, Cu, Sn, Cr, In and other metal/non-metal propargyl structures as propargyl nucleophiles, thus participating in the propargylation reaction process in-situ or directly as raw materials.

Compared with other traditional methods, the direct addition of the propargyl C-H bond to the carbonyl group is an atomic economy method, which can avoid the consumption of stoichiometric metal or substrate, and avoid the generation of stoichiometric metal salt waste. At the same time, the reaction can proceed through a continuous deprotonation-propargylation-protonation catalytic reaction. However, this catalytic reaction has not been reported in the current literature. At present, only achiral selectivity can be achieved, and it cannot be compatible with molecules containing α-C(sp3)-H bonds in aldehyde substrates. Conceptually, this substrate cannot be achieved by normal basic catalysis, because the proton acidity of the propargyl site (pKa>30) is lower than the acidity of the aldehyde group α-H (pKa≈17). Hence, the reaction is easier to proceed through self-aldol condensation reaction.

In view of this, Zhang Liming of UCSB, Qian Pengcheng of Wenzhou University, etc. reported a method to synthesize chiral propargyl alcohol under mild conditions by intramolecular transformation. This reaction synthesizes a chiral bifunctional phosphorus ligand. Through the tertiary organic amine (pKa≈10) on the phosphine ligand, when the acid aldehyde α-H is also present in the substrate molecule, the propargyl C-H bond of the molecule is effectively activated

The reaction has a wide range of substrate and functional group compatibility, and can synthesize homopropargyl alcohol with cyclopentane/cyclohexane with excellent enantioselectivity and trans selectivity. Whether the substrate contains chiral sites or not, both showed good reactivity. As a green and efficient synthesis method, the development of this reaction has important academic significance and application value.

Nature·Catalysis is a top international journal in the field of catalysis, with the IF of 30.5 in 2020 and an immediate IF of 42.

It is also the first time when the academic staff of Wenzhou University published an article in this journal.


2024-03-04

WZU Education Majors Achieve Sixth Place Nationwide in the 9th "Tian Jiabing Cup" National Teaching Skills Competition From December 29th to 31st, the finals of the 9th "Tian Jiabing Cup" National Teaching Skills Competition for education majors were held at Zhejiang Normal University. A total of 1611 participants from 226 universities nationwide competed in this event, with 10 participants from our university. They achieved 4 first prizes, 1 second prize, and 5 third prizes, ranking sixth in the nation for the number ...

2023-10-17

Researcher ZHANG Lijie from the College of Chemistry and Materials Engineering Publishes Academic Paper in "Nature Nanotechnology", Sub-journal of Nature Two-dimensional materials possess novel physical properties such as atomic-level thickness, excellent electronic transport, and optoelectronic characteristics. They serve as ideal platforms for the development of high-performance electronic and optoelectronic devices, potentially extending the traditional silicon-based semiconductor industry based on "Moore's Law" and further enhancing chip tra...

Contact Us

International Relations Office, Wenzhou University

Postal Address: 6th Floor, Administrative Building, South Campus, Wenzhou University, Chashan University Town, Wenzhou City, Zhejiang Province, China 325035

Tel: 0086-577-86680971 86598029

Fax: 0086-577-86598029

E-mail: fao@wzu.edu.cn

Stay Connected

六合彩官方| 东山县| 威尼斯人娱乐棋牌app| 优博百家乐官网娱乐城| 百家乐官网那个平台信誉高 | 百家乐官网最新的投注方法| 百家乐任你博娱乐场| 真钱百家乐官网公司哪个好| 百家乐网址皇冠现金网| 肯博百家乐官网游戏| 澳门百家乐官网海洋阿强| 百家乐官网娱乐官方网| 大发百家乐游戏| 网上百家乐危险| 合肥百家乐官网赌博游戏机| 百家乐模拟游戏下载| 姚记娱乐城信誉最好| 百家乐官网追号| 金城百家乐官网玩法平台| 大赢家即时比分| 威尼斯人娱乐平台博彩投注平| 百家乐官网街机游戏下载| 大发888为什么进不去| 百家乐轮盘桌| 百家乐官网的出千手法| 布拖县| 大发888好不好| 在线百家乐策| 大发888游戏平台df888| 金界百家乐官网的玩法技巧和规则 | 百家乐官网计划| 宝都棋牌游戏| 百家乐太阳城娱乐城| 明溪百家乐官网的玩法技巧和规则 | 大发888娱乐平台下注| 赌神网百家乐的玩法技巧和规则| 网络百家乐官网现金游戏哪里的信誉好啊| 大发888娱乐城充值| 澳门百家乐网上赌博| 澳门百家乐官网视频| 百家乐官网开户送彩网址|