Having control over the sequence is the ultimate key to achieve the high degree structural control over polymeric materials. The ability to control the sequence of building blocks in polymer leads to precise, well-managed synthetic macromolecules with unique and ordered chemical and physical properties. Synthetic macromolecules have entered almost every aspect of modern life, but the use of sequence (as is so potent in biology) has not yet been integrated. However, in the last few years, it has been demonstrated that sequenced-defined bio-oligomers such as oligonucleotides or oligopeptides can find applications in the fields of data storage, biomedicine, drug delivery and nanofabrication because of their versatile physical and chemical prop...
Phosphoramidite chemistry has recently been evidenced to be an efficient and versatile platform to a...
International audienceA photoregulated phosphoramidite iterative process is studied for the synthesi...
Polyphosphoesters are common to both genetics and cutting-edge polymer science. This review seeks to...
International audienceNon-natural, sequence-encoded polyphosphates were prepared using the phosphora...
International audienceIn biological systems, the storage and transfer of genetic information rely on...
International audienceSequence-defined non-natural polyphosphates were prepared using iterative phos...
Sequence-defined non-natural polyphosphates were prepared using iterative phosphoramidite protocols ...
International audienceTo exert its role of a functional polymer, DNA relies on a molecular self-asse...
We have adapted solid phase phosphoramidite synthesis commonly used to make DNA, to produce two sequ...
Non-natural, sequence-encoded polyphosphates were prepared using the phosphoramidite approach on a D...
Sequence-defined polymers with customizable sequences, monodispersity, substantial length, and large...
Natural biopolymers achieve information storage, molecular recognition and catalysis efficiently thr...
Inspired by biological polymers, sequence-controlled synthetic polymers are highly promising materia...
International audienceThe DNA-guided assembly of biohybrid sequence-defined poly(phosphodiester)s wa...
Phosphoramidite chemistry has recently been evidenced to be an efficient and versatile platform to a...
International audienceA photoregulated phosphoramidite iterative process is studied for the synthesi...
Polyphosphoesters are common to both genetics and cutting-edge polymer science. This review seeks to...
International audienceNon-natural, sequence-encoded polyphosphates were prepared using the phosphora...
International audienceIn biological systems, the storage and transfer of genetic information rely on...
International audienceSequence-defined non-natural polyphosphates were prepared using iterative phos...
Sequence-defined non-natural polyphosphates were prepared using iterative phosphoramidite protocols ...
International audienceTo exert its role of a functional polymer, DNA relies on a molecular self-asse...
We have adapted solid phase phosphoramidite synthesis commonly used to make DNA, to produce two sequ...
Non-natural, sequence-encoded polyphosphates were prepared using the phosphoramidite approach on a D...
Sequence-defined polymers with customizable sequences, monodispersity, substantial length, and large...
Natural biopolymers achieve information storage, molecular recognition and catalysis efficiently thr...
Inspired by biological polymers, sequence-controlled synthetic polymers are highly promising materia...
International audienceThe DNA-guided assembly of biohybrid sequence-defined poly(phosphodiester)s wa...
Phosphoramidite chemistry has recently been evidenced to be an efficient and versatile platform to a...
International audienceA photoregulated phosphoramidite iterative process is studied for the synthesi...
Polyphosphoesters are common to both genetics and cutting-edge polymer science. This review seeks to...