adh . Synth的勘误信。植物学报,2013,35 (5):308 - 314

IF 4.4 2区 化学 Q2 CHEMISTRY, APPLIED Advanced Synthesis & Catalysis Pub Date : 2025-01-22 DOI:10.1002/adsc.202500046
Hao Zhu
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引用次数: 0

摘要

我写信给您是为了更正我们发表的题为“多相双功能催化,化学,区域和对映选择性级联逆电子需求Diels-Alder反应,ad . Synth”的文章。学报,2013,35(5):308 - 314。最近,经过别人的提醒和我们的仔细审查,我们发现文章中图1的注释有一些错误。因此,有必要联系您进行更正。详细信息请参考附件。对于这些错误可能造成的任何不便,我们深表歉意,并向您保证,这是无意的。这些表达上的错误并不影响原始研究结果或本文主要结论的真实性。我们恳请您通过签署并返回这封勘误信的副本来确认和承认这些修改。一旦作出必要的更正并取得一致意见,我们将考虑对原始文件进行相应的修改。
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Corrigendum Letter for Adv. Synth. Catal. 2013, 355, 308 – 314
I am writing to you regarding the correction of our published article entitled “Heterogeneous Bifunctional Catalytic, Chemo‐, Regio‐ and Enantioselective Cascade Inverse Electron Demand Diels–Alder Reaction, Adv. Synth. Catal. 2013, 355, 308 – 314.” Recently, after someone's reminder and our careful review, we found that there are some errors in the annotation of Figure 1 in the article. Therefore, it is necessary to contact you for correction. Please refer to the attachment for detailed information. We apologize for any inconvenience these errors may have caused and assure you that they were unintentional. These errors in expression do not undermine the authenticity of the original research findings or the main conclusions of this article. We kindly request your confirmation and acknowledgment of these amendments by signing and returning a copy of this corrigendum letter. Once the necessary corrections are made and agreed upon, we will consider the original document amended accordingly.
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来源期刊
Advanced Synthesis & Catalysis
Advanced Synthesis & Catalysis 化学-应用化学
CiteScore
9.40
自引率
7.40%
发文量
447
审稿时长
1.8 months
期刊介绍: Advanced Synthesis & Catalysis (ASC) is the leading primary journal in organic, organometallic, and applied chemistry. The high impact of ASC can be attributed to the unique focus of the journal, which publishes exciting new results from academic and industrial labs on efficient, practical, and environmentally friendly organic synthesis. While homogeneous, heterogeneous, organic, and enzyme catalysis are key technologies to achieve green synthesis, significant contributions to the same goal by synthesis design, reaction techniques, flow chemistry, and continuous processing, multiphase catalysis, green solvents, catalyst immobilization, and recycling, separation science, and process development are also featured in ASC. The Aims and Scope can be found in the Notice to Authors or on the first page of the table of contents in every issue.
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