Synthetic DNA has emerged as a powerful self-assembled material for the engineering of nanoscale supramolecular devices and materials. Recently dissipative self-assembly of DNA-based supramolecular structures has emerged as a novel approach providing access to a new class of kinetically controlled DNA materials with unprecedented life-like properties. So far, dissipative control has been achieved using DNA-recognizing enzymes as energy dissipating units. Although highly efficient, enzymes pose limits in terms of long-term stability and inhibition of enzyme activity by waste products. Herein, we provide the first example of kinetically controlled DNA nanostructures in which energy dissipation is achieved through a non-enzymatic chemical reac...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
Synthetic DNA has emerged as a powerful selfassembled material for the engineering of nanoscale supr...
Synthetic DNA has emerged as a powerful selfassembled material for the engineering of nanoscale supr...
Nature employs sulfur switches, that is, redox-active disulfides, to kinetically control biological ...
Nature employs sulfur switches, that is, redox-active disulfides, to kinetically control biological ...
Nature employs sulfur switches, that is, redox-active disulfides, to kinetically control biological ...
Deoxyribonucleic acid (DNA) and Ribonucleic acid (RNA) are molecules that store and transmit genetic...
Deoxyribonucleic acid (DNA) and Ribonucleic acid (RNA) are molecules that store and transmit genetic...
We demonstrate a strategy that allows for the spontaneous reconfiguration of self-assembled DNA poly...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
We demonstrate a strategy that allows for the spontaneous reconfiguration of self-assembled DNA poly...
We demonstrate a strategy that allows for the spontaneous reconfiguration of self-assembled DNA poly...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
Synthetic DNA has emerged as a powerful selfassembled material for the engineering of nanoscale supr...
Synthetic DNA has emerged as a powerful selfassembled material for the engineering of nanoscale supr...
Nature employs sulfur switches, that is, redox-active disulfides, to kinetically control biological ...
Nature employs sulfur switches, that is, redox-active disulfides, to kinetically control biological ...
Nature employs sulfur switches, that is, redox-active disulfides, to kinetically control biological ...
Deoxyribonucleic acid (DNA) and Ribonucleic acid (RNA) are molecules that store and transmit genetic...
Deoxyribonucleic acid (DNA) and Ribonucleic acid (RNA) are molecules that store and transmit genetic...
We demonstrate a strategy that allows for the spontaneous reconfiguration of self-assembled DNA poly...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
We demonstrate a strategy that allows for the spontaneous reconfiguration of self-assembled DNA poly...
We demonstrate a strategy that allows for the spontaneous reconfiguration of self-assembled DNA poly...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
DNA nanotechnology has emerged as a powerful tool to precisely design and control molecular circuits...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...