Nanoparticles tethered with DNA strands are promising building blocks for bottom-up nanotechnology, and a theoretical understanding is important for future development. Here we build on approaches developed in polymer physics to provide theoretical descriptions for the equilibrium clustering and dynamics, as well as the self-assembly kinetics of DNA-linked nanoparticles. Striking agreement is observed between the theory and molecular modeling of DNA-tethered nanoparticles
We construct nanoparticle dimers linked by DNA. These dimers are basic units in a possible multiscal...
In recent years there have been a number of proposals to utilize the specificity of DNA-based inter...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
DNA linker mediated self-assembly of nanoparticles- grafting complementary sequences of single stran...
One of the crucial challenges in nanoscience is gaining control over the formation of the desired na...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
<p>The control of matter and phenomena at the nanoscale is fast becoming one of the most important c...
One of the fundamental challenges of nanoscience and nanotechnology today is to organize nanoparticl...
<p>Self-assembly is a pervasive natural phenomenon that gives rise to complex structures and functio...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
Colloidal particles grafted with single-stranded DNA (ssDNA) chains can self-assemble into a number ...
Understanding the fundamental principles behind biomemetic nanoparticle self- assembly has been unde...
Since the pioneering work of Ned Seeman in the early 1980s, the use of the DNA molecule as a constru...
We simulate the assembly of DNA copolymers from two types of short duplexes (short double strands wi...
Since the pioneering work of Ned Seeman in the early 1980s, the use of the DNA molecule as a constru...
We construct nanoparticle dimers linked by DNA. These dimers are basic units in a possible multiscal...
In recent years there have been a number of proposals to utilize the specificity of DNA-based inter...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
DNA linker mediated self-assembly of nanoparticles- grafting complementary sequences of single stran...
One of the crucial challenges in nanoscience is gaining control over the formation of the desired na...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
<p>The control of matter and phenomena at the nanoscale is fast becoming one of the most important c...
One of the fundamental challenges of nanoscience and nanotechnology today is to organize nanoparticl...
<p>Self-assembly is a pervasive natural phenomenon that gives rise to complex structures and functio...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
Colloidal particles grafted with single-stranded DNA (ssDNA) chains can self-assemble into a number ...
Understanding the fundamental principles behind biomemetic nanoparticle self- assembly has been unde...
Since the pioneering work of Ned Seeman in the early 1980s, the use of the DNA molecule as a constru...
We simulate the assembly of DNA copolymers from two types of short duplexes (short double strands wi...
Since the pioneering work of Ned Seeman in the early 1980s, the use of the DNA molecule as a constru...
We construct nanoparticle dimers linked by DNA. These dimers are basic units in a possible multiscal...
In recent years there have been a number of proposals to utilize the specificity of DNA-based inter...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...