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Davydiuk, N., et al. The rising danger of AI-generated images in nanomaterials science and what we can do about it. Nature Nanotechnol. 2025, 20, 1174–1177. https://rdcu.be/eGoGG
Paz-Insua, M., et al. Unraveling the Role of Surfactants in Micelle-Templated Growth of Chiral Plasmonic Nanoparticles. Adv. Functional Mater. 2025, e01377. https://doi.org/10.1002/adom.202501377
Veksler M., et al. Circularly Polarized Light Emission From Single Chiral Hedgehog Particles Coated with Nanofilms of Achiral Perovskites. Adv Mater. 2025, e18765. https://doi.org/10.1002/adma.202418765
Mirkin C.A., et al. 33 Unresolved Questions in Nanoscience and Nanotechnology. ACS Nano. 2025, 19, 36, 31933–31968. https://doi.org/10.1021/acsnano.5c12854
Trazo J.G., et al. Tunable Plasmonic Circular Dichroism of Hierarchical Chiral Assemblies. Chem. Mater. 2025, 37, 6237- 6245. https://doi.org/10.1021/acs.chemmater.5c00909
Nunez-Martinez M., et al. Distinct structural interactions of polyadenine and polythymine on gold nanoparticles: from single strands to duplexes. Chem. Sci. 2025, 16, 15947-15954. https://doi.org/10.1039/D5SC04459F
Ha, I.H., et al. Chiroptical Control of Gold Nanoparticle Growth through Combination of a Multimodal Chirality Inducer and Surfactant Counterion. ACS Nano 2025, 19, 31, 28530- 28539. https://doi.org/10.1021/acsnano.5c07744
Serrano-Freijeiro A., et al. Wavelength-Dependent Differential Amplification of Raman Scattering by Chiral Gold Nanorods for Multiplexed Encoding. Adv. Funct. Mater. 2025, e07076. https://doi.org/10.1002/adfm.202507076
Girod R., et al. Three-Dimensional Electron Microscopy of Chiral Nanoparticles: From Imaging to Measuring. Nano Letters 2025 25 (19), 7629-7640. https://doi.org/10.1021/acs.nanolett.5c01640

Robin Girod, Kyle Van Gordon, Fahim Faraji, Mikhail Mychinko, Francisco Bevilacqua, Cem Sevik, Milorad V. Milošević, Luis M. Liz-Marzán, Sara Bals. Chirality Transfer via Orientational Order of Micellar Assemblies on Gold Nanocrystals. Advanced Materials 2026: e72905. https://advanced.onlinelibrary.wiley.com/doi/10.1002/adma.72905

Haixin Lin, Sangmin Lee, Yinsheng Guo, Vahagn Mkhitaryan, Diego M. Solís, Víctor F. Martín, José M. Taboada, Ana Sánchez-Iglesias, Jinghan Zhu, Marek Grzelczak, Lin Sun, Byeongdu Lee, Shunzhi Wang, Wenjie Zhou, Jinsong Wu, Richard P. Van Duyne, Fernando Obelleiro, Luis M. Liz-Marzán, F. Javier García de Abajo, Sharon C. Glotzer, and Chad A. Mirkin. Engineering low-symmetry colloidal crystals with optical anisotropies. Sci. Adv. 2026, 12, eaec7382. https://www.science.org/doi/10.1126/sciadv.aec7382

Serrano-Freijeiro A., Zarzuela-Amor M., Renero-Lecuna C., Obelleiro-Liz M., Martín V. F., Pérez-Juste I., Taboada J. M., Casado J., Pastoriza-Santos I., Pérez-Juste J., Bals S., and Liz-Marzán L. M. Chiral Au@Ag Core–Shell Nanoparticles for Enantioselective SERS Detection of Bio-Relevant Chiral Molecules. ACS Nanoscience Au 2026.

Chow T. H., Jo S., Lu Y., Rivilla I., Mychinko M., Bals S., Mihi A., and Liz-Marzán L. M. Intrinsic and Extrinsic Circular Dichroism in Linear Arrays of Anisotropic Chiral Nanoparticles. Nano Letters 2026, 26 (4), 1394-1402.

Pawlak, M., Abramowicz, J., Maneiro, N. F., Vinnacombe-Willson, G. A., Jo, S., Benchimol, E., Roszkowski, P., Chen, Z., Wang, D., Clever, G. H., Liz-Marzán, L. M., Mihi, A., Polavarapu, L., Lewandowski, W. The Combination of Chiral Assembly and Chiral Template Effects Boosts Circularly Polarized Luminescence of Perovskite Nanocrystals. Angew. Chem. Int. Ed. 2025, e07812. https://onlinelibrary.wiley.com/doi/10.1002/anie.202507812

Vlasov, E., Heyvaert, W., Stoops T., Van Aert, S., Verbeeck, J., Bals, S. Secondary electron topographical contrast formation in scanning transmission electron microscopy. Ultramicroscopy, 2026. Volume 280, 114278. https://arxiv.org/abs/2511.14491

Girelli Consolaro, V., Zarzuela-Amor, M., Girod, R. et al. Time-Efficient Electron Tomography for a Quantitative Description of Chiral Nanorods. Adv. Optical Mater. 2025, e02503 https://doi.org/10.1002/adom.202502503

Fernández-Lodeiro C., Gómez-Grana S., Cordero-Ferradás M. J., et al. Tailoring Chiral Gold Nanorods via Single-Step Seed-to-Au(III) Ratio and Unlocking their Potential in Refractive Index Sensing. Adv. Optical Mater. 2025, e02575. https://doi.org/10.1002/adom.202502575

Bevilacqua, F. and Liz-Marzán L. M. Seeded Growth of Large Gold Nanorods Modulated by Halide-Mediated Kinetics. Materials and Interfaces. 2025, 2 (4), 388–396. https://doi.org/10.53941/mi.2025.100030

Davydiuk, N., et al. The rising danger of AI-generated images in nanomaterials science and what we can do about it. Nature Nanotechnol. 2025, 20, 1174–1177.

Veksler M., et al. Circularly Polarized Light Emission From Single Chiral Hedgehog Particles Coated with Nanofilms of Achiral Perovskites. Adv Mater. 2025, e18765. https://doi.org/10.1002/adma.202418765

Mirkin C.A., et al. 33 Unresolved Questions in Nanoscience and Nanotechnology. ACS Nano. 2025, 19, 36, 31933–31968.

Trazo J.G., et al. Tunable Plasmonic Circular Dichroism of Hierarchical Chiral Assemblies. Chem. Mater. 2025, 37, 6237- 6245.

Nunez-Martinez M., et al. Distinct structural interactions of polyadenine and polythymine on gold nanoparticles: from single strands to duplexes. Chem. Sci. 2025, 16, 15947-15954.

Ha, I.H., et al. Chiroptical Control of Gold Nanoparticle Growth through Combination of a Multimodal Chirality Inducer and Surfactant Counterion. ACS Nano 2025, 19, 31, 28530- 28539.

Serrano-Freijeiro A., et al. Wavelength-Dependent Differential Amplification of Raman Scattering by Chiral Gold Nanorods for Multiplexed Encoding. Adv. Funct. Mater. 2025, e07076.

Girod R., et al. Three-Dimensional Electron Microscopy of Chiral Nanoparticles: From Imaging to Measuring. Nano Letters 2025 25 (19), 7629-7640. https://doi.org/10.1021/acs.nanolett.5c01640

Paz-Insua, M., et al. Unraveling the Role of Surfactants in Micelle-Templated Growth of Chiral Plasmonic Nanoparticles. Adv. Optical Mater. 2025, e01377. https://doi.org/10.1002/adom.202501377