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Dive into the research topics where Roujie Sha is active.

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Featured researches published by Roujie Sha.


Soft Matter | 2009

Towards self-replicating materials of DNA-functionalized colloids

Mirjam E. Leunissen; Remi Dreyfus; Roujie Sha; Tong Wang; Nadrian C. Seeman; David J. Pine; Paul M. Chaikin

We report the first results of ongoing research that involves the creation of a new class of non-biological materials designed to self-replicate and, as a result, to grow exponentially. We propose a system design that exploits the strong specificity and thermal reversibility of the interactions between colloidal particles functionalized with complementary single-stranded DNA ‘sticky ends’. Here, we experimentally test the fundamentals of the different steps that constitute the self-replication scheme. First of all, we quantitatively study the equilibrium and kinetic aspects of the aggregation–dissociation behavior of the particles. We find that the dissociation transition is very sharp (∼1 °C) and that it occurs at unexpectedly low temperatures, with the dissociation temperature shifting further down when the fraction of sticky ends becomes smaller. The sharpness of the transition and its sensitivity to the sticky end fraction are important control parameters in our self-replication scheme. We further find that for our present purposes it is best to use a DNA construct with a double-stranded backbone, as this largely prevents unwanted hybridization events, such as secondary structure formation. The latter is seen to lead to peculiar aggregation kinetics, due to a competition between inter- and intra-particle hybridization. Finally, we show how one can obtain dual recognition at different temperatures by functionalizing a single particle species with two distinct DNA sequences and we demonstrate the formation of permanent bonds, using the chemical intercalator psoralen and long-wavelength UV exposure.


Nature Materials | 2009

Switchable self-protected attractions in DNA-functionalized colloids

Mirjam E. Leunissen; Remi Dreyfus; Fook Chiong Cheong; David G. Grier; Roujie Sha; Nadrian C. Seeman; Paul M. Chaikin


Physical Review Letters | 2009

Simple quantitative model for the reversible association of DNA coated colloids

Remi Dreyfus; Mirjam E. Leunissen; Roujie Sha; Alexei V. Tkachenko; Nadrian C. Seeman; David J. Pine; Paul M. Chaikin


Physical Review E | 2010

Aggregation-disaggregation transition of DNA-coated colloids: experiments and theory.

Remi Dreyfus; Mirjam E. Leunissen; Roujie Sha; Alexei V. Tkachenko; Nadrian C. Seeman; David J. Pine; Paul M. Chaikin


Journal of the American Chemical Society | 2010

Quantitative study of the association thermodynamics and kinetics of DNA-coated particles for different functionalization schemes.

Mirjam E. Leunissen; Remi Dreyfus; Roujie Sha; Nadrian C. Seeman; Paul M. Chaikin


Chemical Science | 2012

Templated synthesis of nylon nucleic acids and characterization by nuclease digestion

Yu Liu; Risheng Wang; Liang Ding; Roujie Sha; Nadrian C. Seeman; James W. Canary


Bulletin of the American Physical Society | 2009

Self-protected interactions in DNA-functionalized colloids: Nano Contact Glue

Mirjam E. Leunissen; Remi Dreyfus; Roujie Sha; Nadrian C. Seeman; David J. Pine; Paul M. Chaikin


6th Annual Conference on Foundations of Nanoscience: Self-Assembled Architectures and Devices, FNANO 2009 | 2009

Aggregation-disaggregation transition of DNA coated colloids: Experiments and theory

Remi Dreyfus; Mirjam E. Leunissen; Roujie Sha; Alexei V. Tkachenko; Nadrian C. Seeman; David J. Pine; Paul M. Chaikin


6th Annual Conference on Foundations of Nanoscience: Self-Assembled Architectures and Devices, FNANO 2009 | 2009

Towards self-replicating materials of DNA functionalized colloidal particles

Mirjam E. Leunissen; Remi Dreyfus; Roujie Sha; Tong Wang; Nadrian C. Seeman; David J. Pine; Paul M. Chaikin


Archive | 2008

Progress on systems of DNA modified colloidal particles for self-replication

Paul M. Chaikin; Mirjam E. Leunissen; Remi Dreyfus; Roujie Sha; Nadrian C. Seeman; David G. Grier; David J. Pine

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