Literature DB >> 18327263

Coordination-dependent surface atomic contraction in nanocrystals revealed by coherent diffraction.

W J Huang1, R Sun, J Tao, L D Menard, R G Nuzzo, J M Zuo.   

Abstract

Surface atoms have fewer interatomic bonds than those in the bulk that they often relax and reconstruct on extended two-dimensional surfaces. Far less is known about the surface structures of nanocrystals. Here, we show that coherent diffraction patterns recorded from individual nanocrystals are very sensitive to the atomic structure of nanocrystal surfaces. Nanocrystals of Au of 3-5 nm in diameter were studied by examining diffraction intensity oscillations around the Bragg peaks. Both results obtained from modelling the experimental data and molecular dynamics simulations strongly suggest inhomogeneous relaxations, involving large out-of-plane bond length contractions for the edge atoms (approximately 0.2 A); a significant contraction (approximately 0.13 A) for {100} surface atoms; and a much smaller contraction (approximately 0.05 A) for atoms in the middle of the {111} facets. These results denote a coordination/facet dependence that markedly differentiates the structural dynamics of nanocrystals from bulk crystalline surfaces.

Entities:  

Year:  2008        PMID: 18327263     DOI: 10.1038/nmat2132

Source DB:  PubMed          Journal:  Nat Mater        ISSN: 1476-1122            Impact factor:   43.841


  17 in total

1.  Electron diffractive imaging of oxygen atoms in nanocrystals at sub-ångström resolution.

Authors:  Liberato De Caro; Elvio Carlino; Gianvito Caputo; Pantaleo Davide Cozzoli; Cinzia Giannini
Journal:  Nat Nanotechnol       Date:  2010-04-04       Impact factor: 39.213

2.  Coherent X-ray diffraction imaging of strain at the nanoscale.

Authors:  Ian Robinson; Ross Harder
Journal:  Nat Mater       Date:  2009-04       Impact factor: 43.841

3.  CuS2-passivated Au-core, Au3Cu-shell nanoparticles analyzed by atomistic-resolution Cs-corrected STEM.

Authors:  Subarna Khanal; Gilberto Casillas; Nabraj Bhattarai; J Jesús Velázquez-Salazar; Ulises Santiago; Arturo Ponce; Sergio Mejía-Rosales; Miguel José-Yacamán
Journal:  Langmuir       Date:  2013-07-10       Impact factor: 3.882

4.  Structure of Unsupported Small Palladium Nanoparticles.

Authors:  Weihong Qi; Baiyun Huang; Mingpu Wang
Journal:  Nanoscale Res Lett       Date:  2009-01-07       Impact factor: 4.703

Review 5.  In Situ/Operando Electrocatalyst Characterization by X-ray Absorption Spectroscopy.

Authors:  Janis Timoshenko; Beatriz Roldan Cuenya
Journal:  Chem Rev       Date:  2020-09-28       Impact factor: 60.622

6.  Radiation-induced melting in coherent X-ray diffractive imaging at the nanoscale.

Authors:  O Ponomarenko; A Y Nikulin; H O Moser; P Yang; O Sakata
Journal:  J Synchrotron Radiat       Date:  2011-05-26       Impact factor: 2.616

7.  Lattice-Matched InGaAs-InAlAs Core-Shell Nanowires with Improved Luminescence and Photoresponse Properties.

Authors:  Julian Treu; Thomas Stettner; Marc Watzinger; Stefanie Morkötter; Markus Döblinger; Sonja Matich; Kai Saller; Max Bichler; Gerhard Abstreiter; Jonathan J Finley; Julian Stangl; Gregor Koblmüller
Journal:  Nano Lett       Date:  2015-05-04       Impact factor: 11.189

8.  Signature of dislocations and stacking faults of face-centred cubic nanocrystals in coherent X-ray diffraction patterns: a numerical study.

Authors:  Maxime Dupraz; Guillaume Beutier; David Rodney; Dan Mordehai; Marc Verdier
Journal:  J Appl Crystallogr       Date:  2015-04-16       Impact factor: 3.304

9.  Eigenstress model for electrochemistry of solid surfaces.

Authors:  Hongxin Ma; Xilin Xiong; Panpan Gao; Xi Li; Yu Yan; Alex A Volinsky; Yanjing Su
Journal:  Sci Rep       Date:  2016-06-03       Impact factor: 4.379

10.  Measuring Lattice Strain in Three Dimensions through Electron Microscopy.

Authors:  Bart Goris; Jan De Beenhouwer; Annick De Backer; Daniele Zanaga; K Joost Batenburg; Ana Sánchez-Iglesias; Luis M Liz-Marzán; Sandra Van Aert; Sara Bals; Jan Sijbers; Gustaaf Van Tendeloo
Journal:  Nano Lett       Date:  2015-09-09       Impact factor: 11.189

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