In situ SU-8 silver nanocomposites

Søren V. Fischer, Basil Uthuppu and Mogens H. Jakobsen
Beilstein J. Nanotechnol. 2015, 6, 1661–1665. https://doi.org/10.3762/bjnano.6.168

Cite the Following Article

In situ SU-8 silver nanocomposites
Søren V. Fischer, Basil Uthuppu and Mogens H. Jakobsen
Beilstein J. Nanotechnol. 2015, 6, 1661–1665. https://doi.org/10.3762/bjnano.6.168

How to Cite

Fischer, S. V.; Uthuppu, B.; Jakobsen, M. H. Beilstein J. Nanotechnol. 2015, 6, 1661–1665. doi:10.3762/bjnano.6.168

Download Citation

Citation data can be downloaded as file using the "Download" button or used for copy/paste from the text window below.
Citation data in RIS format can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Zotero.

Citations to This Article

Up to 20 of the most recent references are displayed here.

Scholarly Works

  • Huang, Y.-J.; Chang, W.-H.; Chen, Y.-J.; Lin, C.-H. Synthesis of Metal/SU-8 Nanocomposites through Photoreduction on SU-8 Substrates. Nanomaterials (Basel, Switzerland) 2023, 13, 1784. doi:10.3390/nano13111784
  • Kawakami, K.; Mizutani, Y.; Ura, N.; Shi, Y.; Uenohara, T.; Makiura, Y.; Takaya, Y. Fabrication of metal three-dimensional periodic nanostructures by diffraction phenomenon. In Optical Technology and Measurement for Industrial Applications Conference 2022, SPIE, 2022. doi:10.1117/12.2660170
  • Martínez, E.; Prado, A.; Gonzalez, M.; Anguiano, S.; Tosi, L.; Alarcón, L. S.; Pastoriza, H. Recent Advances on Nanocomposite Resists With Design Functionality for Lithographic Microfabrication. Frontiers in Materials 2021, 8, 16. doi:10.3389/fmats.2021.629792
  • Chauhan, G.; Ángeles, A. L.; González-González, E.; Kulkarni, M. M.; Cardenas-Benitez, B.; Jiménez, M. F.; Santiago, G. T.-d.; Alvarez, M. M.; Madou, M. J.; Martinez-Chapa, S. O. Nano‐spaced Gold on Glassy Carbon Substrate for Controlling Cell Behavior. Advanced Materials Interfaces 2020, 7, 2000238. doi:10.1002/admi.202000238
  • Tan, E. K.; Shrestha, P. K.; Pansare, A. V.; Chakrabarti, S.; Li, S.; Chu, D.; Lowe, C. R.; Nagarkar, A. A. Density Modulation of Embedded Nanoparticles via Spatial, Temporal, and Chemical Control Elements. Advanced materials (Deerfield Beach, Fla.) 2019, 31, 1901802. doi:10.1002/adma.201901802
  • Rentería, V.; Franco, A. Metal Nanoparticles Dispersed in Epoxy Resin: Synthesis, Optical Properties and Applications. Reviews in Plasmonics; Springer International Publishing, 2019; pp 191–228. doi:10.1007/978-3-030-18834-4_8
  • Barry, S.; Pescaglini, A.; Wahl, A.; Dawson, K.; O'Riordan, A. Reducing Charging Currents at Nanowire Sensors: Simulation, Fabrication and Evaluation. In 2019 IEEE SENSORS, IEEE, 2019. doi:10.1109/sensors43011.2019.8956531
  • O'Riordan, A.; Seymour, I.; O'Sullivan, B.; Wahl, A.; Lovera, P.; Rohan, J. F. NANOCOM - Nanoelectrochemical Sensor Systems: Molecular Diffusion Simulations, Sensor Design, Fabrication and Characterization. In Proceedings of the Sixth Annual ACM International Conference on Nanoscale Computing and Communication, ACM, 2019. doi:10.1145/3345312.3345500
  • Mehtab, S.; Zaidi, M. G. H.; Siddiqi, T. I. Designing Fructose Stabilized Silver Nanoparticles for Mercury(II) Detection and Potential Antibacterial Agents. Material Science Research India 2018, 15, 241–249. doi:10.13005/msri/150305
  • Mao, F.; Tong, Q. C.; Nguyen, D. T. T.; Huong, A. T.; Odessey, R.; Saudrais, F.; Lai, N. D. LOPA-based direct laser writing of multi-dimensional and multi-functional photonic submicrostructures. SPIE Proceedings 2017, 10115, 1011509. doi:10.1117/12.2253741
Other Beilstein-Institut Open Science Activities