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References
1. Hunyadi Murph SE, Larsen GK, Korinko P, Coopersmith KJ, Summer AJ, Lewis R (2017)
Nanoparticle treated stainless steel filters for metal vapor sequestration. JOM 69:162–172
2. Mohan D, Pittman CU (2006) Activated carbons and low-cost adsorbents for remediation of
tri-and hexavalent chromium from water. J Hazard Mater 137:762–811
3. Hunyadi Murph SE (2020) Shape-selective mesoscale nanoarchitectures: preparation and
photocatalytic performance. Catalysts 10:532–552
4. Hunyadi Murph SE, Larsen G, Coopersmith K (2017) Anisotropic and shape-selective nanomaterials: structure-property relationships, nanostructure science and technology series. Springer,
pp 1–470
5. Hunyadi Murph SE, Larsen G, Lascola R (2016) Multifunctional hybrid Fe2O3–Au nanoparticles for efficient plasmonic heating. J Visual Exp (JOVE) 108:e53598
6. Dupont D (2014) Selective uptake of rare earths from aqueous solutions by EDTAfunctionalized magnetic and nonmagnetic nanoparticles. ACS Appl Mater Interfaces 6:4980–
4988
7. Warner C, Addleman R, Cinson A, Droubay T, Engelhard M, Nash M, Yantasee W, Warner
M (2010) High-performance, superparamagnetic, nanoparticle-based heavy metal sorbents for
removal of contaminants from natural waters. Chemsuschem 3:749–757
8. Hunyadi Murph SE (2017) An introduction to nanotechnology in anisotropic and shapeselective nanomaterials: structure-property relationships. Springer, Nanostructure Science and
Technology series, pp 3–5
9. Hunyadi Murph SE, Heroux K, Turick C, Thomas D (2012) Metallic and hybrid nanostructures:
fundamentals and applications. In: Applications of nanomaterials, vol 4, ISBN: 1-62699-000X. In: Govil JN (ed) Nanomaterials and nanostructures, vol 4, ISBN: 1-62699-004-2, Studium
Press LLC, USA
10. Ojemaye MO (2017) Surface modified magnetic nanoparticles as efficient adsorbents for heavy
metal removal from wastewater: progress and prospects. Mater Expr 7:439–456
11. Lohse SE, Abadeer NS, Zoloty M, White JC, Newman LE, Murphy CJ (2017) Nanomaterial
probes in the environment: gold nanoparticle soil retention and environmental stability as a
function of surface chemistry. ACS Sustain Chem Eng 5:11451–11458
12. Hunyadi Murph SE, Lawrence K, Sessions H, Brown M, Larsen G (2020) Controlled release of
hydrogen isotopes from hydride-magnetic nanomaterials. ACS Appl Mater Interfaces 12:9478–
9488
13. Li D, Seaman J, Hunyadi Murph SE, Kaplan D, Taylor-Pashow T (2019) Porous iron material
for TcO4- and ReO4- sequestration from groundwater under ambient oxic conditions. J Hazard
Mater 374:177–185
14. Hunyadi Murph SE (2011) One-dimensional plasmonic nano-photocatalysts: synthesis, characterization and photocatalytic activity solar hydrogen and nanotechnology VI, edited by Yasuhiro
Tachibana. Proc Of SPIE 81090T:1–11
15. Hunyadi Murph SE, Murphy C, Colon-Mercado H, Torres R, Heroux K, Fox E, Thompson L,
Haasch R (2011) Tuning of size and shape of Au-Pt nanocatalyst for direct methanol fuel cells.
J Nanoparticle Res 13:6347–6364
16. Hunyadi Murph SE, Jacobs S, Siegfried M, Hu T, Serkiz S, Hudson J (2012) Manganesedoped gold nanoparticles as positive contrast agents for magnetic resonance imaging (MRI). J
Nanoparticle Res 14:658–659
17. Ojea-Jiménez I, López X, Arbiol J, Puentes V (2012) Citrate-coated gold nanoparticles as smart
scavengers for mercury (ii) removal from polluted waters. ACS Nano 6:2253–2260
18. Hunyadi Murph SE, Murphy CJ (2013) Patchy silica-coated silver nanowires as SERS
substrates. J Nanoparticle Res 15:1607
19. Chen GH, Chen W, Yen YC, Wang CW, Chang HT, Chen CF (2014) Detection of mercury
(II) ions using colorimetric gold nanoparticles on paper-based analytical devices. Anal Chem
86:6843–6849
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