| Bildiri Türü |
|
Bildiri Dili | İngilizce |
| Bildiri Alt Türü | Tam Metin Olarak Yayınlanan Tebliğ (Uluslararası Kongre/Sempozyum) | ||
| Bildiri Niteliği | Alanında Hakemli Uluslararası Kongre/Sempozyum | ||
| DOI Numarası | 10.1145/3620679.3620706 | ||
| Kongre Adı | Proceedings of the 2023 13th International Conference on Biomedical Engineering and Technology | ||
| Kongre Tarihi | 15-06-2023 / 18-06-2023 | ||
| Basıldığı Ülke | Japonya | Basıldığı Şehir | |
| Bildiri Linki | https://dl.acm.org/doi/abs/10.1145/3620679.3620706 | ||
| UAK Araştırma Alanları |
Biyomedikal Mühendisliği
|
||
| Özet |
| Thin film coating is used to provide various functions to surfaces and therefore it is a technology that contributes significantly to the country's economy. With coatings at the thin film level, the quantum properties of materials are revealed, which plays a crucial role in the development of materials with new and unique properties. In the field of biomaterials, nano-functionalized surfaces obtained with thin film coatings have promising biological properties. Since the thin film coating measurements used so far cannot make precise measurements and are very costly, new methodologies should be introduced for thin film thickness measurements. We present a portable, low-cost, mass-sensitive QTF (Quartz Tuning Fork) sensor system capable of frequency measurements. In recent years, QTFs have begun to be applied as transducers to sensor systems with the potential to produce highly reliable and low-cost mass-sensitive … |
| Anahtar Kelimeler |
| Biomaterial | Mathematical equations | Plasma coating | Quartz tuning fork | Thin film coating |
| Atıf Sayıları | |
| Scopus | 1 |
| Google Scholar | 2 |