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Tian Du

Bio: Tian Du is an academic researcher. The author has contributed to research in topics: Catalysis & Chemical library. The author has an hindex of 2, co-authored 2 publications receiving 10 citations.

Papers
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Journal ArticleDOI
TL;DR: In this paper, a highly efficient approach to C(sp3)-C(sp 3) bond construction via photoredox catalysis between on-DNA alkenes and N-aryl tertiary amines was developed.

16 citations

Journal ArticleDOI
TL;DR: A conceptual strategy to expand chemical space of DNA-encoded chemical libraries by incorporation of diversity-oriented synthesis by developed Aldol reactions on DNA in a combinatorial way.
Abstract: A DNA-encoded chemical library (DECL) is built with combinatorial chemistry, which works by bringing chemical fragments together to generate diverse structures. However, chemical diversity of DNA-encoded chemical libraries is often limited by DNA compatible synthetic reactions. This report shows a conceptual strategy to expand chemical space of DNA-encoded chemical libraries by incorporation of diversity-oriented synthesis in DECL synthesis. We developed Aldol reactions on DNA in a combinatorial way. After obtaining DNA-tagged α , β -unsaturated ketones which represent important chemical intermediates, many distinct structures with skeletal diversities are achieved by diversity-oriented synthesis.

12 citations


Cited by
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Journal ArticleDOI
TL;DR: A decarboxylative-based hydroalkylation of DNA-conjugated trifluoromethyl-substituted alkenes enabled by single-electron transfer (SET) and subsequent hydrogen atom termination through electron donor–acceptor (EDA) complex activation is detailed.
Abstract: DNA-encoded library (DEL) technology features a time- and cost-effective interrogation format for the discovery of therapeutic candidates in the pharmaceutical industry. To develop DEL platforms, the implementation of water-compatible transformations that facilitate the incorporation of multifunctional building blocks (BBs) with high C(sp3) carbon counts is integral for success. In this report, a decarboxylative-based hydroalkylation of DNA-conjugated trifluoromethyl-substituted alkenes enabled by single-electron transfer (SET) and subsequent hydrogen atom termination through electron donor–acceptor (EDA) complex activation is detailed. In a further photoredox-catalyzed hydroarylation protocol, the coupling of functionalized, electronically unbiased olefins is achieved under air and within minutes of blue light irradiation through the intermediacy of reactive (hetero)aryl radical species with full retention of the DNA tag integrity. Notably, these processes operate under mild reaction conditions, furnishing complex structural scaffolds with a high density of pendant functional groups.

31 citations

Journal ArticleDOI
01 Mar 2021
TL;DR: A critical discussion of the validation of photoredox-mediated alkylation in DEL environments is presented and current synthetic gaps are highlighted and opportunities for further development are speculated upon.
Abstract: Recently, DNA-encoded library (DEL) technology has emerged as an innovative screening modality for the rapid discovery of therapeutic candidates in pharmaceutical settings. This platform enables a cost-effective, time-efficient, and large-scale assembly and interrogation of billions of small organic ligands against a biological target in a single experiment. An outstanding challenge in DEL synthesis is the necessity for water-compatible transformations under ambient conditions. To access uncharted chemical space, the adoption of photoredox catalysis in DELs, including Ni-catalyzed manifolds and radical/polar crossover reactions, has enabled the construction of novel structural scaffolds through regulated odd-electron intermediates. Herein, a critical discussion of the validation of photoredox-mediated alkylation in DEL environments is presented. Current synthetic gaps are highlighted and opportunities for further development are speculated upon.

27 citations

Journal ArticleDOI
TL;DR: In this article, the diversity-oriented synthesis strategy with α,β-unsaturated carbonyl compounds was taken advantage of the DNA-compatible transformations for various heterocyclic scaffolds.

23 citations

Journal ArticleDOI
TL;DR: In this paper, a highly efficient approach to C(sp3)-C(sp 3) bond construction via photoredox catalysis between on-DNA alkenes and N-aryl tertiary amines was developed.

16 citations

Journal ArticleDOI
TL;DR: A visible light-promoted divergent synthesis of on-DNA benzoheterocycles from aldehydes is presented, demonstrating the feasibility of this approach in DNA-encoded chemical library construction.

14 citations