Growth and Studies of LLYSMD Crystals by Experimental, Computational Ways Correlated with Varied Micro-crystals for Utilities in Sensor, Tribological, Projected LED and Projected Screen Display Devices
نویسندگان
1 Department of Computer Science, College of Computational Science and IT, Garden City University, Bangalore, Karnataka, 560049, 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 Crystal Growth, Nanomaterial and Thin Film Laboratory, PG and Research Department of Physics, Thanthai Periyar Government Arts and Science College (Autonomous), Tiruchirappalli - 620023, (affiliated to Bharathidasan University, Trichirappalli-620024
5 Department of Physics, Thanthai Periyar Government Arts and Science College (Autonomous), Tiruchirappalli - 620023, (Affiliated to Bharathidasan University, Trichirappalli-620024), Tamil Nadu, India
6 Department of Physics, Nandha Engineering College (Autonomous), Erode, 638052, Tamilnadu, India
7 Department of Electrical and Electronics Engineering, Kathir College of Engineering, Coimbatore-641062, Tamilnadu, India
8 Department of Computer Science and Engineering, Selvam College of Technology, Namakkal-637003, Tamilnadu, India
doi
10.48309/ajca.2026.556300.1960چکیده
The quality L-Lysinium L-Mandelate Dihydrate (LLYSMD) crystals are grown after recrystallized several times.The single crystal XRD data of the LLYSMD crystal shows the lattice parameters. The proper display projected profile with colored mapping for RGB for (111) type of Miller indexing of macro-LLYSMD parameters with assigned colors recursive manner of saturated max and min as -29.2428 and 0.05 with no cut-off levels leads to displays to the gadgets of mainly related to electronic devices with displays. The FTIR data of macro-LLYSMD showing with modes in cm-1. The scheme is electro-chemically reversible and to get the CV of the LLYSMD material, the potential is -3 V to + 3 V. Its expected electro-chemical band-gap as 3.75 eV makes it a superior prospect for light-emitting diode (LED) utilization. By employing red LED set-up for the sensitivity as 8% with R2 as 0.2637 and the y as 8E-05 x + 0.2700 the sensor study is reported for first time for LLYSMD-macro one. The optical non-linear behaviour of the sample by the NLO-SHG data of the macro-LLYSMD and micro-LLYSMD are reported for the grown samples; the extended relay for automatic light using macro, micro-100, 10, 5 and 2 micrometers of the veneered LLYSMD are more with normal one as 6%, 5.8%, 5.7%, 5.6% and 5.5% respectively. The macro, micro LLYSMD influxing for opto-electronic use as in microns correspondingly. For M8 thread, the macro and micro veneered are showing shear strength in kN for samples of LLYSMD.