We have created sequenced phosphoester-linked trimers of aromatic donor/acceptors which participate in charge-transfer interactions. Each sequence displays characteristic self-assembly, and complementary sequences interact with each other to produce new nanostructures and thermochromism. This paves the way towards new functional nanomaterials which make bio-analogous use of sequence to tune structure
A new modular approach to an artificial light-harvesting antenna system is presented. The approach i...
Chemical orthogonality is the ability of one or more reactions to efficiently proceed in the presenc...
Dynamic and reversible non‐covalent interactions endow synthetic systems and materials with smart ad...
We have created sequenced phosphoester-linked trimers of aromatic donor/acceptors which participate ...
We have adapted solid phase phosphoramidite synthesis commonly used to make DNA, to produce two sequ...
Having control over the sequence is the ultimate key to achieve the high degree structural control o...
To exert its role of a functional polymer, DNA relies on a molecular self-assembly process that is d...
Polyphosphoesters are common to both genetics and cutting-edge polymer science. This review seeks to...
Thanks to its ability to form duplexes through selective base-pair recognition, DNA is aunique mater...
textNon-covalent interactions are of great interest to chemists and biologists who study the molecul...
A series of hydrogen-bonding motifs are shown to be capable of both high-fidelity and promiscuous mo...
Natural biopolymers achieve information storage, molecular recognition and catalysis efficiently thr...
The chemical synthesis and the supramolecular assembly of an aromatic oligoamine are described. The ...
The large and complex architectures found in biomolecules not only are an amazing feat of molecular ...
Donor-acceptor dyads and triads comprising core-substituted naphthalene diimide (NDI) chromophores a...
A new modular approach to an artificial light-harvesting antenna system is presented. The approach i...
Chemical orthogonality is the ability of one or more reactions to efficiently proceed in the presenc...
Dynamic and reversible non‐covalent interactions endow synthetic systems and materials with smart ad...
We have created sequenced phosphoester-linked trimers of aromatic donor/acceptors which participate ...
We have adapted solid phase phosphoramidite synthesis commonly used to make DNA, to produce two sequ...
Having control over the sequence is the ultimate key to achieve the high degree structural control o...
To exert its role of a functional polymer, DNA relies on a molecular self-assembly process that is d...
Polyphosphoesters are common to both genetics and cutting-edge polymer science. This review seeks to...
Thanks to its ability to form duplexes through selective base-pair recognition, DNA is aunique mater...
textNon-covalent interactions are of great interest to chemists and biologists who study the molecul...
A series of hydrogen-bonding motifs are shown to be capable of both high-fidelity and promiscuous mo...
Natural biopolymers achieve information storage, molecular recognition and catalysis efficiently thr...
The chemical synthesis and the supramolecular assembly of an aromatic oligoamine are described. The ...
The large and complex architectures found in biomolecules not only are an amazing feat of molecular ...
Donor-acceptor dyads and triads comprising core-substituted naphthalene diimide (NDI) chromophores a...
A new modular approach to an artificial light-harvesting antenna system is presented. The approach i...
Chemical orthogonality is the ability of one or more reactions to efficiently proceed in the presenc...
Dynamic and reversible non‐covalent interactions endow synthetic systems and materials with smart ad...