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SOLAR LOG GF VALUES FOR THE SPECTRAL LINES IN THE RANGE ${\lambda}{\lambda}$ 6209 - 6273 ${\AA}$
STALIN C. S.,SINHA K.,SANWAL B. B. The Korean Astronomical Society 1996 Journal of The Korean Astronomical Society Vol.29 No.suppl1
We present here the solar LOG GF values obtained using the Liege solar at las and the standard solar photospheric models for the spectral lines in the wavelength range ${\lambda}{\lambda}$ 6209 - 6273 ${\AA}$. These log gf values shall be used to interpret a high resolution spectra of the star $\gamma$ Draconics.
SOLAR LOG GF VALUES IN THE INFRARED J AND H BANDS
STALIN C. S.,TRIVEDI CHETNA,SINHA K.,SAKWAL B. B. The Korean Astronomical Society 1996 Journal of The Korean Astronomical Society Vol.29 No.suppl1
Solar IR spectra have been utilised by us to derive log gf values for atomic lines due to 17 chemical elements. in the J and H bands, i.e. in the wavelength ranges 1.00 - 1.34 ${\mu}m$ and 1.49 - 1.80 ${\mu}m$ respectively. The observed central line depths were based on the FTS atlases published at. Liege and KPNO. We also reprot new log gf values for 51 lines for which neither theoretical nor experimental values are available till date.
Carbon nanodots: Synthesis, mechanisms for bio-electrical applications
DURAISAMI DHAMODHAR-AN,Hun-Soo Byun,M. Varsha Shree,Dhinakaran Veeman,L. Natrayan,B. Stalin 한국공업화학회 2022 Journal of Industrial and Engineering Chemistry Vol.110 No.-
Due to the exceptional optical properties such as biocompatibility, and low toxicity, carbon nanodots(CNDs) have emerged as a potential material for biosensing, drug delivery, and bioimaging. As a result,CNDs preparation, properties, and applications have sparked much attention. Its advantages include greatbiocompatibility in vitro and in vivo, photobleaching resistance, ease of surface functionalization and bioconjugation,excellent colloidal stability, environmentally safe manufacturing, and low cost. This allowedCNDs to replace traditional fluorescent heavy metal-containing semiconductor quantum dots or organicdyes. CNDs have demonstrated a wide range of applications, despite the fact that the mechanism of theirphotoluminescence remains a mystery. In this review, we examine current advancements in the field ofCNDs and provide a complete overview of their synthesis techniques and emission processes along withtheir applications in biosensing, drug delivery, bioimaging, wound healing, and disease detectionbiosensors.