Catherine J. Murphy

Active 1993–2025

104
Papers
51,946
Citations
88
h-index
101
i10-index

Citations

Citations per year for Catherine J. Murphy1986: 3 citations1994: 2 citations1995: 1 citations1996: 18 citations1997: 36 citations1998: 19 citations1999: 45 citations2000: 52 citations2001: 55 citations2002: 87 citations2003: 144 citations2004: 201 citations2005: 358 citations2006: 250 citations2007: 342 citations2008: 447 citations2009: 423 citations2010: 457 citations2011: 472 citations2012: 429 citations2013: 403 citations2014: 380 citations2015: 395 citations2016: 327 citations2017: 325 citations2018: 308 citations2019: 732 citations2020: 687 citations2021: 571 citations2022: 373 citations2023: 282 citations2024: 396 citations2025: 166 citations2026: 4 citations1987–1993: no citations, so these years are not shown

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 2,088 citing papers, 24.3% of this breakdownChina: 1,601 citing papers, 18.6% of this breakdownIndia: 530 citing papers, 6.2% of this breakdownGermany: 325 citing papers, 3.8% of this breakdownUnited Kingdom: 302 citing papers, 3.5% of this breakdownSouth Korea: 302 citing papers, 3.5% of this breakdownSpain: 256 citing papers, 3% of this breakdownItaly: 225 citing papers, 2.6% of this breakdownAustralia: 190 citing papers, 2.2% of this breakdownCanada: 189 citing papers, 2.2% of this breakdownSingapore: 168 citing papers, 1.9% of this breakdownFrance: 167 citing papers, 1.9% of this breakdown
0%24.3%Other 26.3%

Fields

  • Materials Science44.7%
  • Biochemistry, Genetics and Molecular Biology20.5%
  • Engineering15.6%
  • Medicine9%
  • Chemistry2.9%
  • Immunology and Microbiology1.1%
  • Other6.2%

Topics

  • Gold and Silver Nanoparticles Synthesis and Applications11.5%
  • Advanced biosensing and bioanalysis techniques10.7%
  • Nanoparticles: synthesis and applications4.4%
  • Nanoparticle-Based Drug Delivery4.3%
  • Nanoplatforms for cancer theranostics4.3%
  • Biosensors and Analytical Detection3.4%
  • Other61.4%

Coauthors

All papers

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  1. The golden age: gold nanoparticles for biomedicine

    Authors: , , , , - Chemical Society Reviews 2011 cited by 3,467

  2. Society for Immunotherapy of Cancer (SITC) consensus definitions for immune checkpoint inhibitor-associated immune-related adverse events (irAEs) terminology

    Authors: , , , , , , , , , , , , , , , , - Journal for ImmunoTherapy of Cancer 2023 cited by 142

  3. Toxicity and cellular uptake of gold nanoparticles: what we have learned so far?

    Authors: , - Journal of Nanoparticle Research 2010 cited by 1,472

  4. Gold Nanoparticles Are Taken Up by Human Cells but Do Not Cause Acute Cytotoxicity

    Authors: , , , , - Small 2005 cited by 2,388

  5. Recent Progress in Cancer Thermal Therapy Using Gold Nanoparticles

    Authors: , - The Journal of Physical Chemistry C 2016 cited by 911

  6. Anisotropic Metal Nanoparticles: Synthesis, Assembly, and Optical Applications

    Authors: , , , , , , , - The Journal of Physical Chemistry B 2005 cited by 3,060

  7. Gold Nanoparticles in Biology: Beyond Toxicity to Cellular Imaging

    Authors: , , , , , , - Accounts of Chemical Research 2008 cited by 1,795

  8. Gold nanorods: Their potential for photothermal therapeutics and drug delivery, tempered by the complexity of their biological interactions

    Authors: , , , , - Advanced Drug Delivery Reviews 2011 cited by 797

  9. Seeding Growth for Size Control of 5−40 nm Diameter Gold Nanoparticles

    Authors: , , - Langmuir 2001 cited by 1,347

  10. Seed-Mediated Growth Approach for Shape-Controlled Synthesis of Spheroidal and Rod-like Gold Nanoparticles Using a Surfactant Template

    Authors: , , - Advanced Materials 2001 cited by 1,751

  11. Cellular Uptake and Cytotoxicity of Gold Nanorods: Molecular Origin of Cytotoxicity and Surface Effects

    Authors: , , , , , - Small 2009 cited by 1,018

  12. Seed-Mediated Synthesis of Gold Nanorods: Role of the Size and Nature of the Seed

    Authors: , - Chemistry of Materials 2004 cited by 961

  13. Distance and Plasmon Wavelength Dependent Fluorescence of Molecules Bound to Silica-Coated Gold Nanorods

    Authors: , , , - ACS Nano 2014 cited by 404

  14. Seeded High Yield Synthesis of Short Au Nanorods in Aqueous Solution

    Authors: , - Langmuir 2004 cited by 1,379

  15. Wet Chemical Synthesis of High Aspect Ratio Cylindrical Gold Nanorods

    Authors: , , - The Journal of Physical Chemistry B 2001 cited by 2,520

  16. Evidence for Seed-Mediated Nucleation in the Chemical Reduction of Gold Salts to Gold Nanoparticles

    Authors: , , - Chemistry of Materials 2001 cited by 707

  17. Quantitation of Metal Content in the Silver-Assisted Growth of Gold Nanorods

    Authors: , - The Journal of Physical Chemistry B 2006 cited by 695

  18. The Gold Standard: Gold Nanoparticle Libraries To Understand the Nano–Bio Interface

    Authors: , , - Accounts of Chemical Research 2012 cited by 321

  19. Impacts of gold nanoparticle charge and ligand type on surface binding and toxicity to Gram-negative and Gram-positive bacteria

    Authors: , , , , , , , , , , , , , - Chemical Science 2015 cited by 253

  20. Room Temperature, High-Yield Synthesis of Multiple Shapes of Gold Nanoparticles in Aqueous Solution

    Authors: , - Journal of the American Chemical Society 2004 cited by 1,571

  21. Targeted Photothermal Lysis of the Pathogenic Bacteria, Pseudomonas aeruginosa, with Gold Nanorods

    Authors: , , , , - Nano Letters 2007 cited by 500

  22. Surface-Enhanced Raman Spectroscopy of Self-Assembled Monolayers: Sandwich Architecture and Nanoparticle Shape Dependence

    Authors: , , , - Analytical Chemistry 2005 cited by 663

  23. Nanoparticles for Imaging, Sensing, and Therapeutic Intervention

    Authors: , , , , , , , - ACS Nano 2014 cited by 291

  24. CLIC-01: Manufacture and distribution of non-cryopreserved CAR-T cells for patients with CD19 positive hematologic malignancies

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Evelyn Wiebe, Piriya Yoganathan, Liana Medynski, Dominique C. Vaillan, Alice Black, Sheryl McDiarmid, Michael Kennah, Linda Hamelin, Kevin Song, Sujaatha Narayanan, Judith Anula Rodrigo, Stefany Dupont, Terry Hawrysh, Justin Presseau, Kednapa Thavorn, Manoj M. Lalu, Dean Fergusson, John C. Bell, Harold Atkins, Brad H. Nelson, Robert A. Holt - Frontiers in Immunology 2022 cited by 30