Innovative Research Award
Orlando Auciello — Original Biomedical Implants, United States
| Orlando Auciello | |
|---|---|
| Affiliation | Original Biomedical Implants |
| Country | United States |
| Scopus ID | 7005859096 |
| Documents | 416 |
| Citations | 18,388 |
| h-index | 64 |
| Subject Area | Li-ion Battery Technology |
| Event | Cryogenicist Global Awards |
| ORCID | 0000-0001-5350-872X |
Orlando Auciello is a researcher, whose documentation is associated with research spanning diamond-based materials, thin films, biomedical applications, and advanced device technologies. The Record identifies a documenting publications in ferroelectric films, diamond thin films, and related materials research.
Contents
Abstract
Orlando Auciello’s documented research profile includes work on ferroelectric thin films, ultrananocrystalline diamond, nanostructured materials, MEMS technologies, and biomedical diamond coatings. His publication record includes research addressing both fundamental materials science and device-oriented applications.[1]
Keywords
Orlando Auciello; Li-ion Battery Technology; ultrananocrystalline diamond; biomedical implants; ferroelectric films; thin-film materials; MEMS; nanotechnology.
Introduction
Auciello’s publication history demonstrates sustained engagement with advanced materials and thin-film research. His documented studies include ferroelectricity in ultrathin perovskite films and diamond-based materials for technological applications.[2]
Research Profile
The profile identifies Auciello as a Professor at the University of Texas at Dallas and lists highly cited publications involving ferroelectric materials, diamond films, plasma processing, and surface characterization. The Google Scholar record provides additional bibliographic evidence for this research trajectory. [1]
Research Contributions
Research associated with Auciello includes ultrananocrystalline diamond films for multifunctional devices and MEMS, as well as biologically active diamond surfaces. A Nature Materials study reported DNA-modified nanocrystalline diamond thin films as stable platforms for surface hybridization applications.[3]
Publications
The research profile records publications in Science, Nature Materials, Applied Physics Letters, Diamond and Related Materials, and other journals. Selected works address ferroelectricity, ultrananocrystalline diamond, and materials processing for micro- and nanoscale devices.[4]
Research Impact
The Google Scholar snapshot reports 29,100 citations and an h-index of 81, while the award data provides a separate Scopus-based set of metrics. These figures should be understood as database-specific snapshots rather than interchangeable measures.[5]
Award Suitability
For the Innovative Research Award associated with the Cryogenicist Global Awards, the documented record provides a basis for describing sustained research activity in advanced materials, diamond coatings, thin films, and biomedical applications. The relationship to the stated Li-ion Battery Technology subject area should be independently evaluated against the award’s specific eligibility criteria.
Conclusion
Orlando Auciello’s documented scholarly record encompasses several interconnected areas of materials science and engineering, including ferroelectricity, diamond-based thin films, MEMS, and biomedical applications. The cited publications provide identifiable evidence of this multidisciplinary research profile.
External Links
References
- Fong, D. D., Stephenson, G. B., Streiffer, S. K., Eastman, J. A., Auciello, O., Fuoss, P. H., & Thompson, C. (2004). Ferroelectricity in ultrathin perovskite films. Science, 304(5677), 1650–1653.
https://doi.org/10.1126/science.1098252 - Krauss, A. R., Auciello, O., Gruen, D. M., et al. (2001). Ultrananocrystalline diamond thin films for MEMS and moving mechanical assembly devices. Diamond and Related Materials, 10(11), 1952–1961.
https://doi.org/10.1016/S0925-9635(01)00385-5 - Yang, W., Auciello, O., Butler, J. E., et al. (2002). DNA-modified nanocrystalline diamond thin-films as stable, biologically active substrates. Nature Materials, 1, 253–257.
https://doi.org/10.1038/nmat779 - Auciello, O., & Sumant, A. V. (2010). Status review of the science and technology of ultrananocrystalline diamond (UNCD™) films and application to multifunctional devices. Diamond and Related Materials, 19(7–9), 699–718.
https://doi.org/10.1016/j.diamond.2010.03.015 - Auciello, O., & Aslam, D. M. (2021). Review on advances in microcrystalline, nanocrystalline and ultrananocrystalline diamond films-based micro/nano-electromechanical systems technologies. Journal of Materials Science, 56, 7171–7230.
https://doi.org/10.1007/s10853-020-05699-9