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Su. Chem Synth 2023;3:46 https://dx.doi.org/10.20517/cs.2023.62 Page 3 of 3
controlled method overcoming solid-phase peptide synthesis (SPPS) limitations. It highlights the potential
[6]
for innovation in peptide chemistry and encourages young researchers to join the field .
This Special Issue is a tribute to Professor Alain Krief’s profound impact on the field of organic selenium
chemistry, commemorating his 80th birthday and celebrating his lasting legacy in shaping the future of
chemical synthesis. It highlights Krief’s innovative work, which has transformed selenium from a neglected
element to a cornerstone in synthetic chemistry. Additionally, the Issue acknowledges his visionary
leadership at the IOCD, which has advanced the role of chemistry in global development.
DECLARATIONS
Authors’ contributions
The author contributed solely to this manuscript.
Availability of data and materials
Not applicable.
Financial support and sponsorship
None.
Conflicts of interest
Su BL is the Editor-in-Chief of Chemical Synthesis, and the author declared that there are no conflicts of
interest.
Ethical approval and consent to participate
Not applicable.
Consent for publication
Not applicable.
Copyright
©The Author(s) 2023.
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carbon derived from aluminum based MOFs. Chem Synth 2023;3:30. DOI
2. Siddiqui M, Wahab A, Choudhary MI, Rahman A. Biotransformation studies on bioactive compounds: 25 years of interesting research
at the ICCBS. Chem Synth 2023;3:25. DOI
3. Cerri SA. Information, knowledge, and human learning for chemistry: the visionary contribution of Professor Alain Krief. Chem Synth
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4. Cheng H, Yam VW. Luminescent alkynylplatinum(II) terpyridine-containing conjugated polymers: synthesis, characterization and
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5. Dang C, Liu M, Lin Z, Yan W. Selenium nanomaterials enabled flexible and wearable electronics. Chem Synth 2023;3:14. DOI
6. Yamamoto H. From Lewis acids to peptide chemistry. Chem Synth 2022;2:14. DOI

