Literature DB >> 27339985

Polyelemental nanoparticle libraries.

Peng-Cheng Chen1, Xiaolong Liu2, James L Hedrick3, Zhuang Xie4, Shunzhi Wang4, Qing-Yuan Lin1, Mark C Hersam5, Vinayak P Dravid1, Chad A Mirkin6.   

Abstract

Multimetallic nanoparticles are useful in many fields, yet there are no effective strategies for synthesizing libraries of such structures, in which architectures can be explored in a systematic and site-specific manner. The absence of these capabilities precludes the possibility of comprehensively exploring such systems. We present systematic studies of individual polyelemental particle systems, in which composition and size can be independently controlled and structure formation (alloy versus phase-separated state) can be understood. We made libraries consisting of every combination of five metallic elements (Au, Ag, Co, Cu, and Ni) through polymer nanoreactor-mediated synthesis. Important insight into the factors that lead to alloy formation and phase segregation at the nanoscale were obtained, and routes to libraries of nanostructures that cannot be made by conventional methods were developed.
Copyright © 2016, American Association for the Advancement of Science.

Entities:  

Year:  2016        PMID: 27339985     DOI: 10.1126/science.aaf8402

Source DB:  PubMed          Journal:  Science        ISSN: 0036-8075            Impact factor:   47.728


  36 in total

1.  Structural Evolution of Three-Component Nanoparticles in Polymer Nanoreactors.

Authors:  Peng-Cheng Chen; Jingshan S Du; Brian Meckes; Liliang Huang; Zhuang Xie; James L Hedrick; Vinayak P Dravid; Chad A Mirkin
Journal:  J Am Chem Soc       Date:  2017-07-12       Impact factor: 15.419

2.  Catalyst discovery through megalibraries of nanomaterials.

Authors:  Edward J Kluender; James L Hedrick; Keith A Brown; Rahul Rao; Brian Meckes; Jingshan S Du; Liane M Moreau; Benji Maruyama; Chad A Mirkin
Journal:  Proc Natl Acad Sci U S A       Date:  2018-12-17       Impact factor: 11.205

3.  Windowless Observation of Evaporation-Induced Coarsening of Au-Pt Nanoparticles in Polymer Nanoreactors.

Authors:  Jingshan S Du; Peng-Cheng Chen; Brian Meckes; Edward J Kluender; Zhuang Xie; Vinayak P Dravid; Chad A Mirkin
Journal:  J Am Chem Soc       Date:  2018-06-01       Impact factor: 15.419

4.  The Structural Fate of Individual Multicomponent Metal-Oxide Nanoparticles in Polymer Nanoreactors.

Authors:  Jingshan S Du; Peng-Cheng Chen; Brian Meckes; Zhuang Xie; Jinghan Zhu; Yuan Liu; Vinayak P Dravid; Chad A Mirkin
Journal:  Angew Chem Int Ed Engl       Date:  2017-05-16       Impact factor: 15.336

Review 5.  Creative use of analytical techniques and high-throughput technology to facilitate safety assessment of engineered nanomaterials.

Authors:  Qi Liu; Xiang Wang; Tian Xia
Journal:  Anal Bioanal Chem       Date:  2018-08-01       Impact factor: 4.142

6.  Catalyst design by scanning probe block copolymer lithography.

Authors:  Liliang Huang; Peng-Cheng Chen; Mohan Liu; Xianbiao Fu; Pavlo Gordiichuk; Yanan Yu; Chris Wolverton; Yijin Kang; Chad A Mirkin
Journal:  Proc Natl Acad Sci U S A       Date:  2018-03-23       Impact factor: 11.205

7.  Active matter therapeutics.

Authors:  Arijit Ghosh; Weinan Xu; Neha Gupta; David H Gracias
Journal:  Nano Today       Date:  2020-02-27       Impact factor: 20.722

8.  Rational construction of a library of M29 nanoclusters from monometallic to tetrametallic.

Authors:  Xi Kang; Xiao Wei; Shan Jin; Qianqin Yuan; Xinqi Luan; Yong Pei; Shuxin Wang; Manzhou Zhu; Rongchao Jin
Journal:  Proc Natl Acad Sci U S A       Date:  2019-09-05       Impact factor: 11.205

9.  Recombinant Escherichia coli as a biofactory for various single- and multi-element nanomaterials.

Authors:  Yoojin Choi; Tae Jung Park; Doh C Lee; Sang Yup Lee
Journal:  Proc Natl Acad Sci U S A       Date:  2018-05-21       Impact factor: 11.205

Review 10.  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

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