Designing artificial macromolecules with absolute sequence order represents a considerable challenge. Here we report an advanced light-induced avenue to monodisperse sequence-defined functional linear macromolecules up to decamers via a unique photochemical approach. The versatility of the synthetic strategy-combining sequential and modular concepts-enables the synthesis of perfect macromolecules varying in chemical constitution and topology. Specific functions are placed at arbitrary positions along the chain via the successive addition of monomer units and blocks, leading to a library of functional homopolymers, alternating copolymers and block copolymers. The in-depth characterization of each sequence-defined chain confirms the precision...
Translating the precise monomer sequence control achieved in nature over macromolecular structure (f...
Sequence-defined macromolecules consist of a defined chain length (single mass), end-groups, composi...
Sequence-encoded oligo(thioether urethane)s with two different coding monomers per backbone unit wer...
Designing artificial macromolecules with absolute sequence order represents a considerable challenge...
We report the first photochemical protocol for the generation of sequence defined macromolecules emp...
International audienceLight-induced alteration of macromolecular information plays a central role in...
An advanced light-induced avenue to monodisperse sequence-defined linear macromolecules via a unique...
International audienceBiopolymers such as DNA store information in their chains using controlled seq...
The control over comonomer sequences is barely studied in macromolecular science nowadays. This is a...
The development of practical routes that enable the synthesis of unimolecular non-natural macromolec...
Phosphoramidite chemistry has recently been evidenced to be an efficient and versatile platform to a...
Millions of years of biological evolution have driven the development of highly sophisticated molecu...
The encoded precision of biological polymers enables a few simple monomers (e.g., four nucleotides i...
Translating the precise monomer sequence control achieved in nature over macromolecular structure (f...
Sequence-defined macromolecules consist of a defined chain length (single mass), end-groups, composi...
Sequence-encoded oligo(thioether urethane)s with two different coding monomers per backbone unit wer...
Designing artificial macromolecules with absolute sequence order represents a considerable challenge...
We report the first photochemical protocol for the generation of sequence defined macromolecules emp...
International audienceLight-induced alteration of macromolecular information plays a central role in...
An advanced light-induced avenue to monodisperse sequence-defined linear macromolecules via a unique...
International audienceBiopolymers such as DNA store information in their chains using controlled seq...
The control over comonomer sequences is barely studied in macromolecular science nowadays. This is a...
The development of practical routes that enable the synthesis of unimolecular non-natural macromolec...
Phosphoramidite chemistry has recently been evidenced to be an efficient and versatile platform to a...
Millions of years of biological evolution have driven the development of highly sophisticated molecu...
The encoded precision of biological polymers enables a few simple monomers (e.g., four nucleotides i...
Translating the precise monomer sequence control achieved in nature over macromolecular structure (f...
Sequence-defined macromolecules consist of a defined chain length (single mass), end-groups, composi...
Sequence-encoded oligo(thioether urethane)s with two different coding monomers per backbone unit wer...