Click Chemistry: Diverse Chemical Function from a Few Good Reactions
Клик-химия: разнообразная химическая функция от нескольких хороших реакций
2001-06-01
SCID: 54.1/a2yzsxp7
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C-X-C linkagescarbon-heteroatom bondsclick chemistrycombinatorial librariescondensation polymers
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Abstract (AI)
Examination of nature's favorite molecules reveals a striking preference for making carbon-heteroatom bonds over carbon-carbon bonds-surely no surprise given that carbon dioxide is nature's starting material and that most reactions are performed in water. Nucleic acids, proteins, and polysaccharides are condensation polymers of small subunits stitched together by carbon-heteroatom bonds. Even the 35 or so building blocks from which these crucial molecules are made each contain, at most, six contiguous C-C bonds, except for the three aromatic amino acids. Taking our cue from nature's approach, we address here the development of a set of powerful, highly reliable, and selective reactions for the rapid synthesis of useful new compounds and combinatorial libraries through heteroatom links (C-X-C), an approach we call "click chemistry". Click chemistry is at once defined, enabled, and constrained by a handful of nearly perfect "spring-loaded" reactions. The stringent criteria for a process to earn click chemistry status are described along with examples of the molecular frameworks that are easily made using this spartan, but powerful, synthetic strategy.
Key Findings
1
Biological building blocks typically contain at most six contiguous C–C bonds, with aromatic amino acids as exceptions.
2
Click chemistry allows construction of diverse molecular frameworks using a limited, high-performing reaction toolkit, emphasizing simplicity and robustness.
3
Click chemistry is defined by stringent criteria for reactions to qualify, enabling rapid synthesis of useful compounds and combinatorial libraries through heteroatom connections.
4
Natural biomolecules preferentially form carbon–heteroatom (C–X) bonds rather than carbon–carbon (C–C) bonds, reflecting aqueous, CO2-based biosynthesis.
5
The authors propose 'click chemistry': a strategy centered on a small set of highly reliable, selective, and efficient 'spring-loaded' reactions for building molecules via heteroatom links (C–X–C).
Research Object
Click chemistry (set of powerful, reliable, and selective reactions for forming heteroatom-linked molecules)
Research Subject
Development and criteria of a small set of nearly perfect 'spring-loaded' reactions to rapidly synthesize diverse compounds and combinatorial libraries via heteroatom links (C–X–C)
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2001-06-01
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