Synthesis, Computational Structural Data, Experimental Studies of Novel ABPBCC Material for Sensor, Tribological and Anti-diabetics Applications
نویسندگان
1 PG and Research Department of Physics, Arignar Anna Government Arts College (Affiliated to Bharathidasan University, Tiruchirappalli-620024), Musiri–621211, Tamilnadu, India
2 PG and Research Department of Physics, Arignar Anna Government Arts College (Affiliated to Bharathidasan University, Tiruchirappalli-620024), Musiri–621211, Tamilnadu, India
3 Department of Physics, S.T Hindu College, Nagercoil-629002, Tamilnadu, India
4 Department of Physiotherapy (Orthopedic), Kasturi College of Physiotherapy, 3-5 A, LIC Colony, Opp to JNTU, Anantapur, 515002, Andhra Pradesh, India
5 K.K University, Bihar Sheriff, Berauti, Bihar-803115, India
6 Department of Chemistry, Mangalore University, Mangalore–574199, India
7 Department of Information Technology, Selvam College of Technology, Namakkal-637003, Tamilnadu, India
8 Centre for Global Health Research, Saveetha Medical College and Hospital, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai-602105, Tamilnadu, India
doi
10.48309/ajca.2026.561515.1976چکیده
Geometries and vibrational frequencies of 2-amino-4-(4-benzyloxyphenyl)-5,10-dioxo-5,10-dihydro-4H-benzo[g]chromene-3-carbonitrile (ABPBCC) in the ground state were determined through quantum based chemically referred computational outcomes. The density functional theory method was employed, along with the 6–31G (d, p) and 6–311G++ (d, p) basis sets. The ABPBCC spectroscopic computations are confirmed by utilizing Gaussian 16W to optimize the structure and bond parameter investigation. The macro-ABPBCC is analyzed for morphological behavior using SEM with 100 micrometer scaling and no flaws. The specific representation of application in electronic field by electronic filters used by macro-scaled ABPBCC is 4.7966 microns for the optoelectronic filtering setup as incoming data; the voltage regulated outcome by using a Zener diode shows 12% increase compared to the normal case for veneered ABPBCC. The M8 thread of tribological source compared with uncoated and coated surfaces and is with veneered ABPBCC, showing 2.25% increased output for wear and tear of sample case by case may be vary based on sample composition and size may vary, adjusted by 0.303 kN. The macro-ABPBCC is analyzed for red LED based sensor work with for 9% sensitivity, 8% sensitivity, and 7% sensitivity for 308 K, 298 K, and 288 K as esteem viz., respectively. The macro-ABPBCC is a negative photoconductivity specimen applied for a projected photo-detecting unit. The micro-ABPBCC is subjected to anti-diabetic use as the μ-ABPBCC with 100 microns scaling has 78.66 μg/mL as IC50 for the alpha-amylase based outcome, and micro form is better suited than macro-scaled ABPBCC for anti-diabetics.