Zhengwei Ding
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Explore the profile of Zhengwei Ding including associated specialties, affiliations and a list of published articles.
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33
Citations
472
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Recent Articles
1.
Xu Y, Yang W, Li X, Wang X, Pan D, Yuan Z, et al.
Ann Vasc Surg
. 2025 Mar;
PMID: 40064287
Background: Extracranial internal carotid artery aneurysms (EICAAs) are rare, and both endovascular treatment and hybrid surgery have been used to treat them. Herein, we evaluated the outcomes of endovascular treatment...
2.
Yu T, Zhao X, Nie Z, Qin L, Ding Z, Xu L, et al.
Angew Chem Int Ed Engl
. 2024 Dec;
64(9):e202420831.
PMID: 39714393
Although great advancement has been made in synthesis of 3D bridged bicyclic[n.1.1]-bioisosteres, facile construction of 2D/3D merged molecules incorporating bridged rings, as novel chemical space in drug discovery, remains a...
3.
Wen J, Ding Z, Li P
Org Lett
. 2024 Aug;
26(33):7021-7025.
PMID: 39141499
Cyclopentene skeletons are ubiquitous in natural products and small molecule drugs. The (3 + 2) cycloaddition of cyclopropanes and alkynes represents an efficient and atom-economic strategy for synthesizing these structures....
4.
Ding Z, Wang Z, Wang Y, Wang X, Xue Y, Xu M, et al.
Angew Chem Int Ed Engl
. 2024 Jun;
63(38):e202406612.
PMID: 38924325
Piperidines are widely present in small molecule drugs and natural products. Despite many methods have been developed for their synthesis, new approaches to polysubstituted piperidines are highly desirable. This work...
5.
Yu T, Yang J, Wang Z, Ding Z, Xu M, Wen J, et al.
J Am Chem Soc
. 2023 Feb;
PMID: 36763965
In contrast to the traditional and widely-used cycloaddition reactions involving at least a π bond component, a [2σ + 2σ] radical cycloaddition between bicyclo[1.1.0]butanes (BCBs) and cyclopropyl ketones has been...
6.
Xu M, Wang Z, Sun Z, Ouyang Y, Ding Z, Yu T, et al.
Angew Chem Int Ed Engl
. 2022 Nov;
61(52):e202214507.
PMID: 36344444
Ring structures such as pyridine, cyclopentane or their combinations are important motifs in bioactive molecules. In contrast to previous cycloaddition reactions that necessitated a directly bonded initiating functional group, this...
7.
Ding Z, Liu Z, Wang Z, Yu T, Xu M, Wen J, et al.
J Am Chem Soc
. 2022 May;
144(19):8870-8882.
PMID: 35532758
In contrast to the extensive but non-recyclable use of tetraalkoxydiboron(4) compounds as stoichiometric reagents in diverse reactions, this article reports an atom-economical reaction using a commercial diboron(4) as the catalyst....
8.
Liu Z, Ding Z, Chen K, Xu M, Yu T, Tong G, et al.
Nat Prod Rep
. 2021 Jan;
38(9):1589-1617.
PMID: 33508045
Total synthesis of natural products has greatly contributed to natural product research, organic synthesis and drug discovery and development. However, in most cases, the efficiency of total synthesis is far...
9.
Tong G, Ding Z, Liu Z, Ding Y, Xu L, Zhang H, et al.
J Org Chem
. 2020 Mar;
85(7):4813-4837.
PMID: 32166949
Tiglianes such as prostratin and related diterpenoids are biologically significant natural molecules and long-standing targets for organic synthesis community. Due to the complex polycyclic scaffolds, high oxygenation level, and dense...
10.
A unified approach for divergent synthesis of contiguous stereodiads employing a small boronyl group
Zhan M, Ding Z, Du S, Chen H, Feng C, Xu M, et al.
Nat Commun
. 2020 Feb;
11(1):792.
PMID: 32034155
Acyclic contiguous stereocenters are frequently seen in biologically active natural and synthetic molecules. Although various synthetic methods have been reported, predictable and unified approaches to all possible stereoisomers are rare,...