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Research.com Recognitions

  • 2019 - Fellow of Alfred P. Sloan Foundation

Overview

Krishna Rajan is affiliated with the University at Buffalo, State University of New York in the United States. Their research is anchored primarily in the fields of Engineering and Materials Science.

Their work spans several subfields, including:

  • Materials Chemistry
  • Mechanical Engineering
  • Biomedical Engineering
  • Electrical and Electronic Engineering
  • Aerospace Engineering

Key topics within their research portfolio encompass:

  • Machine Learning in Materials Science
  • Advanced Materials Characterization Techniques
  • Perovskite Materials and Applications
  • High Entropy Alloys Studies
  • Solid-state Spectroscopy and Crystallography
  • High-Temperature Coating Behaviors
  • Additive Manufacturing Materials and Processes

Rajan has authored several recent papers. Notable examples include:

  • "An artificial intelligence platform for automated PFAS subgroup classification: A discovery tool for PFAS screening" (2024), published in The Science of The Total Environment
  • "Quantum signatures for screening metavalent solids" (2021), published in The Journal of Chemical Physics
  • "Strain-induced anisotropic ion migration in single-crystal cesium lead halide perovskites" (2023), published in Journal of Applied Physics
  • "Designing a Periodic Table for Alloy Design: Harnessing Machine Learning to Navigate a Multiscale Information Space" (2020), published in JOM
  • "Machine-Learning-Based Intelligent Framework for Discovering Refractory High-Entropy Alloys with Improved High-Temperature Yield Strength" (2021), published in arXiv (Cornell University)

Their work has appeared frequently in venues such as:

  • arXiv (Cornell University)
  • Faraday Discussions
  • Physical Review Materials
  • The Science of The Total Environment
  • Journal of Applied Physics

Frequent collaborators of Krishna Rajan include:

  • Scott Broderick
  • Stephen A. Giles
  • Amith Adoor Cheenady
  • Oliver Ayre
  • Virginie Chamard

In recognition of their contributions, Rajan was named a Fellow of the Alfred P. Sloan Foundation in 2019.

Best Publications

  • Combinatorial and High-Throughput Screening of Materials Libraries: Review of State of the Art

    Radislav Potyrailo;Krishna Rajan;Klaus Stoewe;Ichiro Takeuchi

  • New frontiers for the materials genome initiative

    Juan J. de Pablo;Nicholas E. Jackson;Michael A. Webb;Long Qing Chen

  • Materials Informatics: The Materials ``Gene'' and Big Data

    Krishna Rajan

  • Materials Informatics

    Krishna Rajan;Patricio Mendez

  • Silver nanoparticle ink technology: state of the art

    Krishna Rajan;Ignazio Roppolo;Annalisa Chiappone;Sergio Bocchini

  • Microstructural study of a high-strength stress-corrosion resistant 7075 aluminium alloy

    K. Rajan;W. Wallace;J. C. Beddoes

  • A TEM study of microstructural changes during retrogression and reaging in 7075 aluminum

    Nguyen Cong Danh;Krishna Rajan;W. Wallace

  • Informatics-aided bandgap engineering for solar materials

    Partha Dey;Joe Bible;Somnath Datta;Scott Broderick

  • Combinatorial Materials Sciences: Experimental Strategies for Accelerated Knowledge Discovery

    Krishna Rajan

  • Activation of innate immune responses in a pathogen-mimicking manner by amphiphilic polyanhydride nanoparticle adjuvants.

    Latrisha K. Petersen;Amanda E. Ramer-Tait;Scott R. Broderick;Chang-Sun Kong

  • Mechanisms for nanocrystal formation in metallic glasses

    K.F. Kelton;T.K. Croat;A.K. Gangopadhyay;L.-Q. Xing

  • Ion-irradiation-induced clustering in W–Re and W–Re–Os alloys: A comparative study using atom probe tomography and nanoindentation measurements

    Alan Xu;Christian Beck;David E.J. Armstrong;Krishna Rajan

  • Properties of Complex Inorganic Solids 2

    Annemarie Meike;Antonios Gonis;Patrice E. A. Turchi;Krishna Rajan

  • Room temperature strengthening mechanisms in a Co-Cr-Mo-C alloy

    Krishna Rajan;John B. Vander Sande

  • The future of atom probe tomography

    Michael K. Miller;Thomas. F. Kelly;Krishna Rajan;Simon P. Ringer

  • Fabrication, structure and properties of MoSi2-base composites

    D.E. Alman;K.G. Shaw;N.S. Stoloff;K. Rajan

  • Phase transformations in a wrought Co-Cr-Mo-C alloy

    Krishna Rajan

  • Size-controlled Ni nanocrystal growth on peptide nanotubes and their magnetic properties

    L. Yu;I.A. Banerjee;M. Shima;K. Rajan

  • Rational Design of Pathogen-Mimicking Amphiphilic Materials as Nanoadjuvants

    Bret Daniel Ulery;Latrisha K. Petersen;Yashdeep Phanse;Chang Sun Kong

  • The simultaneous effect of polymer chemistry and device geometry on the in vitro activation of murine dendritic cells.

    Latrisha K. Petersen;Li Xue;Michael J. Wannemuehler;Krishna Rajan

Frequent Co-Authors

Candido Pirri
Candido Pirri Polytechnic University of Turin
Balaji Narasimhan
Balaji Narasimhan Iowa State University
Simon P. Ringer
Simon P. Ringer University of Sydney
Surendra K. Saxena
Surendra K. Saxena Florida International University
Ruifeng Zhang
Ruifeng Zhang Beihang University
Michael K Miller
Michael K Miller Oak Ridge National Laboratory
Michael R. Kessler
Michael R. Kessler North Dakota State University
Susan B. Sinnott
Susan B. Sinnott Pennsylvania State University
Gwo-Ching Wang
Gwo-Ching Wang Rensselaer Polytechnic Institute
Xiaoli Tan
Xiaoli Tan Iowa State University

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