Characterizations of 2,4-Difluroanisole-24DFANIS Organic Macro, Micro Scaled Specimen for Structural and Sensor Applications by Computational and Experimental Ways
نویسندگان
1 Department of Physics, Government Arts and Science College, Veppanthattai, Perambalur, (Affiliated to Bharathidasan University, Trichirappalli-620024), Tamilnadu, India
2 Department of Physics, S.T Hindu College, Nagercoil-629002, Tamilnadu, India
3 Centre for Global Health Research, Saveetha Medical College and Hospital, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai- 602105, Tamilnadu, India
4 Department of Physics, G. E. Society's, HPT Arts and RYK Science College, Nashik, Maharashtra, India
5 Department of Physics, Government Arts and Science College, Karambakkudi, Pudukkottai (Affiliated to Bharathidasan University, Trichirappalli-620024), Tamilnadu, India
6 Department of Chemistry, S.A. Engineering College, Poonamalle, Chennai-600077, Tamilnadu, India
7 Department of Physics, Hindustan College of Engineering and Technology, Valley campus, Pollachi high way, Othakkalmandapam, Coimbatore-641 032, Tamilnadu, India
8 Department of EEE, Sri Ranganathar Institute of Engineering and Technology, Coimbatore, Tamilnadu, India
doi
10.48309/ajca.2025.508861.1794چکیده
Organic class of 2,4-difluroanisole-24DFANIS materials of macro/micro class is reported here mainly for sensory uses; the elemental analysis of the organic 2,4-difluroanisole (24DFANIS) has been studied to ensure the presence of the elements along with their proportions in % by theory and practice. The structural computational effect of 24DFANIS for nano-device fabricated of 25 nm applications is measured and the corresponded data of computational elucidation of the 24DFANIS structure is reported. The sensor work of red LED based enhanced work for macro (thick film) and micro (thin film) 24DFANIS is measured and reported at room temperature effectiveness at 29.2 oC with 54% humidity for both the specified cases. The main aim of the work is to confirm the sample atoms and proceed for nano-tubular work as well as sensor analyses.