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Materials Science

D-Index
62
Citations
14750
World Ranking
6440
National Ranking
1636

Overview

Andrew R. Lupini is affiliated with Oak Ridge National Laboratory in the United States. Their research primarily focuses on materials science with a significant body of work addressing aspects of materials chemistry, surfaces, coatings, films, and structural biology. They have also contributed to fields such as electrical and electronic engineering and atomic and molecular physics, and optics.

The scientist's work encompasses a range of specialized topics, including electron and X-ray spectroscopy techniques, advanced electron microscopy techniques and applications, and the electronic and structural properties of oxides. Other key topics include graphene research and applications, machine learning in materials science, two-dimensional materials and applications, as well as semiconductor materials and devices.

Frequent coauthors collaborating with Andrew R. Lupini include Stephen Jesse, Ondrej Dyck, Sergei V. Kalinin, Maxim Ziatdinov, and Rama K. Vasudevan. Lupini's publications appear often in venues such as Microscopy and Microanalysis, arXiv (Cornell University), Advanced Materials, ACS Applied Nano Materials, and Advanced Materials Interfaces.

Recent papers authored or coauthored by Lupini showcase a range of research subjects and high-impact journals:

  • Local electronic structure variation resulting in Li 'filament' formation within solid electrolytes, 2021, Nature Materials
  • Bifunctional nanoprecipitates strengthen and ductilize a medium-entropy alloy, 2021, Nature
  • Machine learning in scanning transmission electron microscopy, 2022, Nature Reviews Methods Primers
  • Automated and Autonomous Experiments in Electron and Scanning Probe Microscopy, 2021, ACS Nano
  • Discovery of conjoined charge density waves in the kagome superconductor CsV3Sb5, 2022, Nature Communications

Best Publications

  • Towards sub-Å electron beams

    O.L. Krivanek;N. Dellby;A.R. Lupini

  • Direct Sub-Angstrom Imaging of a Crystal Lattice

    Peter D. Nellist;Matthew F Chisholm;N. Dellby;O. L. Krivanek

  • Band gap engineering and layer-by-layer mapping of selenium-doped molybdenum disulfide.

    Yongji Gong;Zheng Liu;Zheng Liu;Andrew R. Lupini;Gang Shi

  • Criteria for Predicting the Formation of Single-Phase High-Entropy Alloys

    M. Claudia Troparevsky;James R. Morris;James R. Morris;Paul R. C. Kent;Andrew R. Lupini

  • Detection of Single Atoms and Buried Defects in Three Dimensions by Aberration-Corrected Electron Microscope with 0.5-Å Information Limit

    C. Kisielowski;B. Freitag;M. Bischoff;H. van Lin

  • Local electronic structure variation resulting in Li 'filament' formation within solid electrolytes.

    Xiaoming Liu;Regina Garcia-Mendez;Andrew R. Lupini;Yongqiang Cheng

  • Spectroscopic imaging of single atoms within a bulk solid.

    M. Varela;S. D. Findlay;A. R. Lupini;H. M. Christen

  • Atomic-resolution imaging of oxidation states in manganites

    M. Varela;M. P. Oxley;M. P. Oxley;W. Luo;W. Luo;J. Tao

  • Progress in aberration-corrected scanning transmission electron microscopy.

    Niklas Dellby;Ondrej L. Krivanek;Peter D. Nellist;Philip E. Batson

  • Grain-Boundary-Enhanced Carrier Collection in CdTe Solar Cells

    Chen Li;Yelong Wu;Jonathan Poplawsky;Timothy J. Pennycook

  • Bifunctional nanoprecipitates strengthen and ductilize a medium-entropy alloy.

    Ying Yang;Tianyi Chen;Tianyi Chen;Lizhen Tan;Jonathan D. Poplawsky

  • Three-dimensional imaging of individual hafnium atoms inside a semiconductor device

    Klaus van Benthem;Andrew R. Lupini;Miyoung Kim;Hion Suck Baik

  • MATERIALS CHARACTERIZATION IN THE ABERRATION-CORRECTED SCANNING TRANSMISSION ELECTRON MICROSCOPE

    M. Varela;A.R. Lupini;K. van Benthem;A.Y. Borisevich

  • Flexible Metallic Nanowires with Self-Adaptive Contacts to Semiconducting Transition-Metal Dichalcogenide Monolayers

    Junhao Lin;Ovidiu Cretu;Wu Zhou;Kazu Suenaga

  • Depth sectioning with the aberration-corrected scanning transmission electron microscope

    Albina Y. Borisevich;Andrew R. Lupini;Stephen J. Pennycook

  • Efficient phase contrast imaging in STEM using a pixelated detector. Part 1: experimental demonstration at atomic resolution.

    Timothy J. Pennycook;Timothy J. Pennycook;Andrew R. Lupini;Hao Yang;Matthew F. Murfitt

  • Patterned arrays of lateral heterojunctions within monolayer two-dimensional semiconductors.

    Masoud Mahjouri-Samani;Ming-Wei Lin;Kai Wang;Andrew R. Lupini

  • Transfer-matrix Formalism for the Calculation of Optical Response in Multilayer Systems: from Coherent to Incoherent Interference

    M. Claudia Troparevsky;Adrian S. Sabau;Andrew R. Lupini;Zhenyu Zhang

  • Thermal stability and catalytic activity of gold nanoparticles supported on silica

    Gabriel M. Veith;Andrew R. Lupini;Sergey Rashkeev;Sergey Rashkeev;Stephen J. Pennycook

  • Surface faceting and elemental diffusion behaviour at atomic scale for alloy nanoparticles during in situ annealing

    Miaofang Chi;Chao Wang;Yinkai Lei;Guofeng Wang

Frequent Co-Authors

Stephen J. Pennycook
Stephen J. Pennycook University of Tennessee at Knoxville
Sokrates T. Pantelides
Sokrates T. Pantelides Vanderbilt University
Albina Y. Borisevich
Albina Y. Borisevich Oak Ridge National Laboratory
Sergei V. Kalinin
Sergei V. Kalinin University of Tennessee at Knoxville
Stephen Jesse
Stephen Jesse Oak Ridge National Laboratory
Maria Varela
Maria Varela Complutense University of Madrid
Gabriel M. Veith
Gabriel M. Veith Oak Ridge National Laboratory
Matthew F. Chisholm
Matthew F. Chisholm Oak Ridge National Laboratory
Raymond R. Unocic
Raymond R. Unocic Oak Ridge National Laboratory
Juan Carlos Idrobo
Juan Carlos Idrobo University of Washington

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