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Number of items: 7.

Wang, Yisu, Sztranyovszky, Zoltan, Zilli, Attilio, Albrecht, Wiebke, Bals, Sara, Borri, Paola ORCID: and Langbein, Wolfgang ORCID: 2022. Quantitatively linking morphology and optical response of individual silver nanohedra. Nanoscale 14 (30) , 11028. 10.1039/D2NR02131E

Payne, Lukas M., Masia, Francesco ORCID:, Zilli, Attilio, Albrecht, Wiebke, Borri, Paola ORCID: and Langbein, Wolfgang ORCID: 2021. Quantitative morphometric analysis of single gold nanoparticles by optical extinction microscopy: material permittivity and surface damping effects. Journal of Chemical Physics 154 , 044702. 10.1063/5.0031012

Wang, Yisu, Zilli, Attilio, Sztranyovszky, Zoltan, Langbein, Wolfgang ORCID: and Borri, Paola ORCID: 2020. Quantitative optical microspectroscopy, electron microscopy, and modelling of individual silver nanocubes reveals surface compositional changes at the nanoscale. Nanoscale Advances 2 (6) , pp. 2485-2496. 10.1039/D0NA00059K

Zilli, Attilio, Langbein, Wolfgang ORCID: and Borri, Paola ORCID: 2019. Quantitative measurement of the optical cross-sections of single nano-objects by correlative transmission and scattering micro-spectroscopy. ACS Photonics 6 (8) , pp. 2149-2160. 10.1021/acsphotonics.9b00727

Payne, Lukas, Zilli, Attilio, Wang, Yisu, Langbein, Wolfgang ORCID: and Borri, Paola ORCID: 2019. Quantitative high-throughput optical sizing of individual colloidal nanoparticles by wide-field imaging extinction microscopy. Presented at: SPIE BIOS, San Francisco, CA, USA, 2-7 February 2019. Proceedings Volume 10892, Colloidal Nanoparticles for Biomedical Applications XIV. , vol.108920 Society of Photo-Optical Instrumentation Engineers (SPIE), p. 17. 10.1117/12.2507632

Zilli, Attilio 2018. Measuring and modelling the absolute optical cross- sections of individual nano-objects. PhD Thesis, Cardiff University.
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Zilli, Attilio, De Luca, Marta, Tedeschi, Davide, Fonseka, H. Aruni, Miriametro, Antonio, Tan, Hark Hoe, Jagadish, Chennupati, Capizzi, Mario and Polimeni, Antonio 2015. Temperature dependence of interband transitions in Wurtzite InP Nanowires. ACS Nano 9 (4) , p. 4277. 10.1021/acsnano.5b00699

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