NPC (nuclear pore complex) morphology. Direct observation of DNA knots using a solid-state nanopore · Article. Morphology Control of Hairy Nanopores.

May 01, 2019  · AsianScientist (May 1, 2019) – Scientists in Japan have found the gene responsible for the formation of nanopores in fruit flies, with implications on how the insects sense chemical cues in the air. The research is published in Current Biology. Nature is a treasure trove of unique patterns and structures that form at the nanometer scale.

In this contribution we explore by means of experiments, theory, and molecular dynamics the effect of pore morphology on the spontaneous extrusion of nonwetting liquids from nanopores. Understanding and controlling this phenomenon is central for manipulating nanoconfined liquids, e. g. Read More

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Control measurements were carried out on nuclei and nuclear envelopes exposed to. Kröger M, Rabin Y, Szleifer I. Morphology control of hairy nanopores.

In this contribution we explore by means of experiments, theory, and molecular dynamics the effect of pore morphology on the spontaneous extrusion of nonwetting liquids from nanopores. Understanding and controlling this phenomenon is central for.

Nov 24, 2014  · The nuclear pore complex (NPC) is the gate for transport between the cell nucleus and the cytoplasm. Small molecules cross the NPC by passive diffusion, but molecules larger than ∼.

The properties of polymer layers end-grafted to the inner surface of nanopores connected to solvent reservoirs are studied theoretically as a function of solvent.

1 Over-limiting Current and Control of Dendritic Growth by Surface Conduction in Nanopores Ji-Hyung Han1, Edwin Khoo1, Peng Bai1, and Martin Z. Bazant1,2* Departments of Chemical Engineering1 and Mathematics2 Massachusetts Institute.

Nanoporous membranes attract increasing attention due to their applications in. facile control over the membrane porosity and nanopore surface properties. A study of morphological properties of SiO2 aerogels obtained at different.

Nov 24, 2014  · The nuclear pore complex (NPC) is the gate for transport between the cell nucleus and the cytoplasm. Small molecules cross the NPC by passive.

Phys Rev E Stat Nonlin Soft Matter Phys 2015 Oct 23;92(4):042713. Epub 2015 Oct 23. Department of Physics and Courant Institute of Mathematical Sciences, New York University, New York, New York 10012 USA and NYU-ECNU Institutes of Physics and Mathematical Sciences at NYU Shanghai, 3663 Zhongshan Road North, Shanghai, 200062, China.

Hydroxyapatite nanopores of different pore sizes (20 Å H 110 Å, where H is the size of the nanopore) in contact with liquid water and aqueous electrolyte solutions (CaCl 2 (aq) and CaF 2 (aq)) were investigated using molecular dynamics simulations to quantify the effect of

Most recent data on insect hairy attachment systems have demonstrated their excellent. As a control, two different smooth surfaces were used: sapphire. There is a distinct sexual dimorphism in the morphology of adhesive pads: males.

tions affects the morphology and dynamics of FG domain assemblies, we. control on film formation and greatly facilitates a detailed. hairy nanopores.

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The team found the melting points of C 16 in the nanopores are depressed, which varied largely with the pore size, the nature of the pore wall, and pore morphology. In the pores of CPG (300 nm), n -C 16 shows only the triclinic phase as the bulk.

Apr 4, 2014. Here, we achieved highly efficient catalytic locomotion in microtubular engines with hierarchical nanoporous walls. The sophisticated structures.

Jun 14, 2018. Tagliazucchi M and Szleifer I 2016 Chemically Modified Nanopores and. I 2011 Morphology control of hairy nanopores ACS Nano 5 4737–47.

We analyse here how curvature affects the morphology of polymers on nano- curved. polyelectrolyte modified nanopores, spherical polyelectrolyte brushes, hairy. can be used as a tool to control nanoscale morphology and function.

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Feb 13, 2016  · jp504588b (1) 1. Tunable Donnan Potential and Electrokinetic Flow in a Biomimetic Gated Nanochannel with pH-Regulated Polyelectrolyte Brushes Zachary Milne,†,§ Li-Hsien Yeh,*,‡,§ Tzung-Han Chou,‡ and Shizhi Qian*,† † Institute of Micro/Nanotechnology, Old Dominion University, Norfolk, Virginia 23529, United States ‡ Department of Chemical and Materials Engineering,

(2011). Morphology control of hairy nanopores.’ In: (2003). Mussel adhesive protein mimetic polymers for the preparation of nonfouling surfaces.’ (2007). Nanomechanical basis of selective gating by the nuclear pore complex.’

The team found the melting points of C 16 in the nanopores are depressed, which varied largely with the pore size, the nature of the pore wall, and pore morphology. In the pores of CPG (300 nm), n -C 16 shows only the triclinic phase as the bulk.

Apr 27, 2011. The properties of polymer layers end- grafted to the inner.

Peleg O, Tagliazucchi M, Kröger M, Rabin Y, Szleifer I. Morphology control of hairy nanopores. ACS Nano. 2011; 5:4737–4747. [PubMed: 21524134]. 29.

1 Over-limiting Current and Control of Dendritic Growth by Surface Conduction in Nanopores Ji-Hyung Han1, Edwin Khoo1, Peng Bai1, and Martin Z. Bazant1,2* Departments of Chemical Engineering1 and Mathematics2 Massachusetts Institute of Technology, Cambridge, MA 02139, USA

Mar 2, 2012. zucchi, M.; Kr6ger, M.; Rabin, Y.; Szleifer, L, Morphology. Control of Hairy Nanopores. ACS Nano 2011, 5 (6), 4737-. 4747.). Several artificial.

Feb 13, 2016  · jp504588b (1) 1. Tunable Donnan Potential and Electrokinetic Flow in a Biomimetic Gated Nanochannel with pH-Regulated Polyelectrolyte Brushes Zachary Milne,†,§ Li-Hsien Yeh,*,‡,§ Tzung-Han Chou,‡ and Shizhi Qian*,† † Institute of Micro/Nanotechnology, Old Dominion University, Norfolk, Virginia 23529, United States ‡ Department of Chemical and Materials Engineering, National.

Morphology control of hairy nanopores. O Peleg, M Tagliazucchi, M Kröger, Y Rabin, I Szleifer. ACS nano 5 (6), 4737-4747, 2011. 66, 2011. Converging on the.

Apr 20, 2011  · Therefore, it is crucial to understand the effects of the confinement of nanopores on the morphology and properties of polymer blends to develop novel polymer blend nanomaterials and nanodevices.

The morphology of these domains (aggregates on pore walls or stacked micelles along the pore axis) is mainly. title = {Morphology control of hairy nanopores},

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Apr 20, 2011  · Therefore, it is crucial to understand the effects of the confinement of nanopores on the morphology and properties of polymer blends to develop.

· How can we measure, understand, and control the evolution of the nanopore’s cross-sectional profile? · Under what conditions is a circular nanopore shape stable, and under what conditions is it unstable? Some of our nanopores develop an irregular morphology.

May 21, 2018. SEM and AFM imaging were recorded to find out the morphology and. 1.2 Controlled polymerization techniques for hairy nanoparticle synthesis. 6. while carbon nanotubes were used to form nanopores in polymeric.

Phys Rev E Stat Nonlin Soft Matter Phys 2015 Oct 23;92(4):042713. Epub 2015 Oct 23. Department of Physics and Courant Institute of Mathematical Sciences, New York University, New York, New York 10012 USA and NYU-ECNU Institutes of Physics and Mathematical Sciences at NYU Shanghai, 3663 Zhongshan Road North, Shanghai, 200062, China.

One strategy for achieving better control of single-molecular transport is by. Peleg O., Tagliazucchi M., Szleifer I. Morphology control of hairy nanopores.

M Tagliazucchi, I Szleifer. Soft Matter 8 (28), 7292-7305, 2012. 73, 2012. Morphology control of hairy nanopores. O Peleg, M Tagliazucchi, M Kröger, Y Rabin,