近年来,有机电化学合成已经成为有机合成化学中构造碳碳及碳杂键的重要方法. 该文主要综述了目前电化学合成的主要研究方向,着重介绍了我们课题组在电化学合成中利用碘自由基,促进苯乙酮α-C—H键的官能团化所取得的研究进展. 该方面的研究为绿色有机合成的发展提供了新的思路和方向.Recently, organic electrochemical synthesis has emerged as the most important and attractive method to construct carbon-carbon bond and carbon-heteroatom bonds in organic synthetic chemistry. This review mainly summarizes the electrochemical syntheses at present, especially focused on the recent progresses in our research group using an iodine radical as a mediator to promote α-C?H bond functionalization. The organic electrosynthesis provides an alternative approach and a new research direction in the development of green organic synthesis.国家自然科学基金项目(21272222, 21172205, 21432009, 21472177, 21672...
18.09.2022 tarihine kadar kullanımı yazar tarafından kısıtlanmıştır.Yüksek lisans tez çalışması olar...
The current thesis aims to improve the electrochemical capacity of activated carbon electrodes, whic...
Glassy carbon (GC) surfaces can be functionalized exploiting the electrochemical reduction of iodoni...
Electrochemical C−H functionalization is a rapidly growing area of interest in organic synthesis. To...
In recent years, the electrochemistry has been greatly developed. In particular, electrocatalytic st...
Electro-Organic Chemistry has great potential to be used extensively in chemical synthesis but remai...
C–H functionalization chemistry is one of the most vibrant research areas within synthetic organic c...
从实验和理论两个方面对电化学振荡的研究进展做了介绍.重点介绍了理论研究方面的情况,并提出了现阶段其理论研究中存在的不足以及今后的发展方向.国家自然科学基金中文核心期刊要目总览(PKU)中国科学引文数据...
This review summaries recent development across electro-, photoelectro- and bioelectro-catalyst deve...
442 pagesElectroorganic synthesis is an enabling technology for modern organic chemistry owing to it...
电化学技术已经在有机合成得到广泛重视,本文简要概述了利用羰基和亚胺的电化学烯丙基化反应合成高烯丙醇和高烯丙胺的方法. 该方法已经得到了比较瞩目的进展,特别是在水相中的电化学烯丙基化反应,充分体现了绿色...
Invited for this month's cover picture is the group of Dr. Nisar Ahmed (Cardiff University, United K...
目前已发现多种过渡金属络合物可以实现芳香C-H键的活化.例如Pd,Ru,Rh,Cu,Ni,Fe等的络合物都能够实现导向或非导向的各种芳香C-H键活化官能化.对近年来过渡金属催化的芳香C-H键活化构建C...
Notre stratégie de stockage d’électrons repose sur la formation et la rupture de liaisons chimiques ...
peer-reviewedElectrochemical, spectroscopic and computational methods are used to demonstrate that e...
18.09.2022 tarihine kadar kullanımı yazar tarafından kısıtlanmıştır.Yüksek lisans tez çalışması olar...
The current thesis aims to improve the electrochemical capacity of activated carbon electrodes, whic...
Glassy carbon (GC) surfaces can be functionalized exploiting the electrochemical reduction of iodoni...
Electrochemical C−H functionalization is a rapidly growing area of interest in organic synthesis. To...
In recent years, the electrochemistry has been greatly developed. In particular, electrocatalytic st...
Electro-Organic Chemistry has great potential to be used extensively in chemical synthesis but remai...
C–H functionalization chemistry is one of the most vibrant research areas within synthetic organic c...
从实验和理论两个方面对电化学振荡的研究进展做了介绍.重点介绍了理论研究方面的情况,并提出了现阶段其理论研究中存在的不足以及今后的发展方向.国家自然科学基金中文核心期刊要目总览(PKU)中国科学引文数据...
This review summaries recent development across electro-, photoelectro- and bioelectro-catalyst deve...
442 pagesElectroorganic synthesis is an enabling technology for modern organic chemistry owing to it...
电化学技术已经在有机合成得到广泛重视,本文简要概述了利用羰基和亚胺的电化学烯丙基化反应合成高烯丙醇和高烯丙胺的方法. 该方法已经得到了比较瞩目的进展,特别是在水相中的电化学烯丙基化反应,充分体现了绿色...
Invited for this month's cover picture is the group of Dr. Nisar Ahmed (Cardiff University, United K...
目前已发现多种过渡金属络合物可以实现芳香C-H键的活化.例如Pd,Ru,Rh,Cu,Ni,Fe等的络合物都能够实现导向或非导向的各种芳香C-H键活化官能化.对近年来过渡金属催化的芳香C-H键活化构建C...
Notre stratégie de stockage d’électrons repose sur la formation et la rupture de liaisons chimiques ...
peer-reviewedElectrochemical, spectroscopic and computational methods are used to demonstrate that e...
18.09.2022 tarihine kadar kullanımı yazar tarafından kısıtlanmıştır.Yüksek lisans tez çalışması olar...
The current thesis aims to improve the electrochemical capacity of activated carbon electrodes, whic...
Glassy carbon (GC) surfaces can be functionalized exploiting the electrochemical reduction of iodoni...