Xiangfan Chen

Assistant Professor

  • 0 Citations
  • 0 h-Index
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Fingerprint Dive into the research topics where Xiangfan Chen is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

Printing Engineering & Materials Science
Nanophotonics Chemical Compounds
Economic and social effects Engineering & Materials Science
Metamaterials Engineering & Materials Science
Plasmons Chemical Compounds
Optical instrument lenses Engineering & Materials Science
Light modulation Engineering & Materials Science
Quantum theory Chemical Compounds

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Research Output 2014 2019

  • 15 Article
  • 7 Conference contribution
  • 1 Conference article

45% Periodicity Reduction in Nanocomposite Thin Films via Rapid Solvent Removal

Huang, J., Chen, X., Bai, P., Hai, R., Sun, C. & Xu, T., Feb 26 2019, In : Macromolecules. 52, 4, p. 1803-1809 7 p.

Research output: Contribution to journalArticle

Nanocomposite films
Thin films

Accelerating terahertz all-optical modulation by hot carriers effects of silver nanorods in PVA film

Yu, J. P., Chen, S., Fan, F., Xu, S. T., Cheng, J. R., Chen, X. F., Xiao, L. & Chang, S. J., Jul 1 2019, In : AIP Advances. 9, 7, 075017.

Research output: Contribution to journalArticle

Open Access
Terahertz waves
Hot carriers
Hot electrons
polyvinyl alcohol
Light modulation

Disposable ultrasound-sensing chronic cranial window by soft nanoimprinting lithography

Li, H., Dong, B., Zhang, X., Shu, X., Chen, X., Hai, R., Czaplewski, D. A., Zhang, H. F. & Sun, C., Dec 1 2019, In : Nature communications. 10, 1, 4277.

Research output: Contribution to journalArticle

Open Access

High-resolution 3D printing magnetically-active microstructures using micro-CLIP process

Shao, G., Ware, H. O. T., Chen, X., Li, L. & Sun, C., Jan 1 2019, Nano-, Bio-, Info-Tech Sensors and 3D Systems III. Kim, J. (ed.). SPIE, 109690M. (Proceedings of SPIE - The International Society for Optical Engineering; vol. 10969).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Ferrosoferric Oxide
Iron oxides

High-Speed 3D Printing of Millimeter-Size Customized Aspheric Imaging Lenses with Sub 7 nm Surface Roughness

Chen, X., Liu, W., Dong, B., Lee, J., Ware, H. O. T., Zhang, H. F. & Sun, C., May 3 2018, In : Advanced Materials. 30, 18, 1705683.

Research output: Contribution to journalArticle

Open Access
Optical instrument lenses
Economic and social effects
Mobile phones