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Dive into the research topics where J. David Londono is active.

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Featured researches published by J. David Londono.


Langmuir | 2017

Control of Mechanical Stability of Hollow Silica Particles, and Its Measurement by Mercury Intrusion Porosimetry

Jelena Lasio; Alan M. Allgeier; Christopher D. Chan; J. David Londono; Ebrahim Najafi; Francis J. Woerner

Hollow silica particles (HSPs) have become the focus of interest in many laboratories recently, because of their versatility, stemming from the ability to control their size and shape, as well as surface functionalization. Determining the mechanical stability of hollow particles is essential for their use, both in applications in which they need to retain their structure, as well as those in which they need to break down. We have synthesized a series of HSPs (inner diameter of 231 nm) with increasing wall thickness (7-25 nm), using a template approach. Their mechanical stability was measured using mercury intrusion porosimetry (MIP), which represents the novel application of the technique for these materials. The samples with complete shells break at progressively higher pressures, and samples with wall thickness ≥21 nm remain stable to the highest pressure applied (414 MPa). Other characterization methods, namely microscopy, gas adsorption, and small-angle X-ray scattering, shed light on the size parameters of the particles, as well as the porosity of the silica walls. By varying the amount of silica precursor used in the template coating step, we were able to produce hollow silicas with variable stability, thereby allowing for control of their mechanical properties.


Langmuir | 1998

Alkanethiolate gold cluster molecules with core diameters from 1.5 to 5.2 nm: Core and monolayer properties as a function of core size

Michael J. Hostetler; Julia E. Wingate; Chuan-Jian Zhong; Jay E. Harris; Richard W. Vachet; Michael Clark; J. David Londono; Stephen J. Green; Jennifer J. Stokes; G. D. Wignall; Gary L. Glish; Marc D. Porter; Neal D. Evans; Royce W. Murray


Polymers for Advanced Technologies | 1997

Nanophase separation and crystallization in PEIM-12 poly(4,4′-phthaloimidobenzoyl-dodecamethyleneoxycarbonyl)

Wei Chen; M. Pyda; Anton Habenschuss; J. David Londono; Bernhard Wunderlich


Archive | 2002

Structure of poly(dimethylsiloxane) liquids

John G. Curro; Scott Wilson Sides; Gary S. Grest; Mark J. Stevens; Anton Habenschuss; J. David Londono; Thomas Soddemann


Archive | 2002

The structure factor of poly(dimethylsiloxane) from wide angle X-ray scattering, molecular dynamics and PRISM

Anton Habenschuss; J. David Londono; John G. Curro; Scott Wilson Sides; Gary S. Grest; Mark J. Stevens; T. Soddeman


Archive | 2000

New X-ray and Neutron Diffraction Data and PRISM Theory for Polyethylene Melts

Anton Habenschuss; B. K. Annis; J. David Londono; John G. Curro; Jeffrey D. Weinhold; Mathias Puetz


Archive | 1998

Self-Consistent PRISM Studies of Polyolefin Melts

Jeffrey D. Weinhold; John G. Curro; Anton Habenschuss; J. David Londono


Archive | 1997

Chain Packing in Some Polymers Melts from X-ray Diffraction and Molecular Dynamics Simulations

Anton Habenschuss; J. David Londono; J. K. Taylor; William W. Graessley; Shankar Raman Krishna Kumar; Maurizio Mondello; Gary S. Grest


Archive | 1997

The Cation Environment in a LiI Doped PEO melt via Neutron Scattering and MD Simulations

J. David Londono; B. K. Annis; Oleg V. Borodin; Grant D. Smith


Archive | 1997

Structure and Thermodynamics of Polyolefin Melts

Jeffrey D. Weinhold; John G. Curro; Anton Habenschuss; J. David Londono

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Anton Habenschuss

Oak Ridge National Laboratory

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John G. Curro

Sandia National Laboratories

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Jeffrey D. Weinhold

Sandia National Laboratories

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B. K. Annis

Oak Ridge National Laboratory

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Gary S. Grest

Sandia National Laboratories

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