<p>In this work, Tri caesium di-molybdate&#xa0;(VI) bromide—TCDMB crystals is well-grown using the solution growth method. Nano-TCDMB crystals are obtained properly by 34-hour milling of macro-TCDMB crystals, and the 25 nm sample is investigated by the powder XRD, SEM and TEM. The interactive profile of TCDMB for normalized and shaped profile represent projections of the TCDMB material normalized and non-linear optical behaviour; the electrical condition, dielectric constant and dielectric loss of nano-TCDMB initially at higher values at lower frequency limits and gradually getting reduced over increase in the frequency limits and variance in log<i>f</i> value, are especially by the milled impact. Also, the higher dielectric constant at room temperature affects the nano-TCDMB crystal that can predict its use in super-capacitors. The nano-TCDMB crystal provides the emission at 541 nm with the band gap of 2.2920 eV in greenish way of fluorescence. The anti-diabetic utility of alpha-amylase and alpha-glucosidase based <i>in-vitro</i> activity of nano-TCDMB is reported. The sensor activity of TCDMB is reported for macro, nano and is 7%&#xa0;and 8%, respectively. So, nano is preferred than macro/micro by sensory and bio-activities.</p>

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Synthesis, physio-chemical and biological studies of nano-crystals of Tri caesium di-molybdate (VI) bromide for electronic, anti-diabetic and sensor applications

  • V. Swarnalatha,
  • Ehab El Sayed Massoud,
  • Sahebrao B. Pagar,
  • K. SenthilKannan

摘要

In this work, Tri caesium di-molybdate (VI) bromide—TCDMB crystals is well-grown using the solution growth method. Nano-TCDMB crystals are obtained properly by 34-hour milling of macro-TCDMB crystals, and the 25 nm sample is investigated by the powder XRD, SEM and TEM. The interactive profile of TCDMB for normalized and shaped profile represent projections of the TCDMB material normalized and non-linear optical behaviour; the electrical condition, dielectric constant and dielectric loss of nano-TCDMB initially at higher values at lower frequency limits and gradually getting reduced over increase in the frequency limits and variance in logf value, are especially by the milled impact. Also, the higher dielectric constant at room temperature affects the nano-TCDMB crystal that can predict its use in super-capacitors. The nano-TCDMB crystal provides the emission at 541 nm with the band gap of 2.2920 eV in greenish way of fluorescence. The anti-diabetic utility of alpha-amylase and alpha-glucosidase based in-vitro activity of nano-TCDMB is reported. The sensor activity of TCDMB is reported for macro, nano and is 7% and 8%, respectively. So, nano is preferred than macro/micro by sensory and bio-activities.