Other — Fabrication of nonlinear optical metal-organic framework dizinc tetraglycinate dihydrate with optical limiting applications

Measurement evidence

Other

Fabrication of nonlinear optical metal-organic framework dizinc tetraglycinate dihydrate with optical limiting applications · Bright K.C., Anila R.N., Anugop B. et al. · Journal of Materials Science: Materials in Electronics · 2024 · 2224

3 measurement groups · 17 results

Reported values remain attached to the sample, method, conditions, extraction quality and source location that produced them.

Coats-Redfern non-isothermal kinetic analysis

DZTGD single crystal · Single Crystal

C-R plot used to calculate activation energy, frequency factor and thermodynamic parameters

Temperature
399.15
Atmosphere
not reported
Geometry
thermal-analysis-derived kinetic fit
Context
pristine DZTGD
Measurement source
12 · 4.10 Kinetic and thermodynamic parameters · Table 5; Fig. 21
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Activation energy20,931.2786 JText
Exact Reported
12 · 4.10 Kinetic and thermodynamic parameters · Fig. 21
Enthalpy of activation14.296 kJ mol-1Table
Exact Reported
12 · 4.10 Kinetic and thermodynamic parameters · Table 5
Entropy of activation-90.40 J K-1 mol-1Table
Exact Reported
12 · 4.10 Kinetic and thermodynamic parameters · Table 5
Frequency factor A1.876*10^7 min^-1Table
Exact Reported
12 · 4.10 Kinetic and thermodynamic parameters · Table 5
Gibbs free energy50.367 kJ mol-1Table
Exact Reported
12 · 4.10 Kinetic and thermodynamic parameters · Table 5
Kinetic analysis temperature126 °CTable
Exact Reported
12 · 4.10 Kinetic and thermodynamic parameters · Table 5
Order of reaction n1/2Table
Exact Reported
12 · 4.10 Kinetic and thermodynamic parameters · Table 5

Laser damage threshold using Q-switched high-energy Nd:YAG laser (QUANTA RAY LAB-170-10)

DZTGD single crystal · Single Crystal

Pulse width 6 ns; power density calculated as E/(tau A); compared with KDP, VMST and KNbO3

Geometry
single spot laser surface damage threshold
Context
pristine DZTGD
Measurement source
16 · 4.17 Laser damage threshold study · Table 8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Laser damage threshold power densityMarked as a best value within this paper2.18 GW/cm2Table
Exact Reported
16 · 4.17 Laser damage threshold study · Table 8
Laser damage pulse width6 nsTable
Exact Reported
16 · 4.17 Laser damage threshold study · Table 8
Laser damage threshold relative to KDPabout 44% of KDPText
Approximate
16 · 4.17 Laser damage threshold study · Table 8

TGA/DTA using PerkinElmer STA 8000 simultaneous thermal analyser

DZTGD single crystal · Single Crystal

Thermal spectrum from low temperature to 800 °C; dehydration and decomposition steps reported

Atmosphere
not reported
Geometry
thermogravimetric/differential thermal analysis
Context
pristine DZTGD
Measurement source
2 · 2.2 Characterization Studies; 4.9 TGA/DTA analysis · Fig. 20
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
First weight loss5.72%Text
Exact Reported
11 · 4.9 TGA/DTA analysis · Fig. 20
First endothermic peak61.94 °CText
Exact Reported
11 · 4.9 TGA/DTA analysis · Fig. 20
Gas-liberation weight loss22.25%Text
Exact Reported
12 · 4.9 TGA/DTA analysis · Fig. 20
450-800 °C weight lossabout 15%Text
Approximate
12 · 4.9 TGA/DTA analysis · Fig. 20
Second weight loss8.45%Text
Exact Reported
11 · 4.9 TGA/DTA analysis · Fig. 20
Second endothermic peak119.64 °CText
Exact Reported
11 · 4.9 TGA/DTA analysis · Fig. 20
Thermal stability after dehydrationMarked as a best value within this paperthermally stable up to 120 °CText
Rounded Reported
11 · 4.9 TGA/DTA analysis · Fig. 20