Sensing Application — Enhancing Near-Infrared Photothermal Performance by Molecular Aggregation Optimization in Semiconductive Coordination Polymers

Measurement evidence

Sensing Application

Enhancing Near-Infrared Photothermal Performance by Molecular Aggregation Optimization in Semiconductive Coordination Polymers · Yan Y., Li Z.-Y., Qu K.-G. et al. · Inorganic Chemistry · 2024 · 22502-22511

2 measurement groups · 9 results

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

NIR photoelectrical response using 808 nm laser and Keithley 2450 SourceMeter

compound 1 thin square pellet for NIR photoelectrical response · Pellet

Photocurrent and dark current measured under ambient conditions; laser power density varied from 0.125 to 0.75 W/cm2.

Temperature
ambient
Atmosphere
ambient
Geometry
pressed thin square pellet
Context
pristine framework
Measurement source
22503, 22508 · 2.5; 3.5 Near-Infrared Photoelectrical Response · Figure 7, Figure S19
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
photoelectrical decay time6.5 sText
Rounded Reported
22508 · 3.5 Near-Infrared Photoelectrical Response · Figure S19a
photoelectrical on/off ratio at 0.75 W/cm21.58Text
Rounded Reported
22508 · 3.5 Near-Infrared Photoelectrical Response · Figure 7b
photoelectrical on/off ratio at 0.125 W/cm20.25Text
Rounded Reported
22508 · 3.5 Near-Infrared Photoelectrical Response · Figure 7b
photoelectrical response time6.2 sText
Rounded Reported
22508 · 3.5 Near-Infrared Photoelectrical Response · Figure S19a
conductivity under NIR photothermal heating versus conventional heatingconsistently lower under NIR photothermal heatingText
Qualitative
22508 · 3.5 Near-Infrared Photoelectrical Response · Figure S20

NIR photoelectrical response using 808 nm laser and Keithley 2450 SourceMeter

compound 2 thin square pellet for NIR photoelectrical response · Pellet

Photocurrent and dark current measured under ambient conditions; laser power density varied from 0.125 to 0.75 W/cm2.

Temperature
ambient
Atmosphere
ambient
Geometry
pressed thin square pellet
Context
pristine framework
Measurement source
22503, 22508 · 2.5; 3.5 Near-Infrared Photoelectrical Response · Figure 7, Figure S19
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
photoelectrical decay timeMarked as a best value within this paper5.2 sText
Rounded Reported
22508 · 3.5 Near-Infrared Photoelectrical Response · Figure S19b
photoelectrical on/off ratio at 0.75 W/cm2Marked as a best value within this paper1.74Text
Rounded Reported
22508 · 3.5 Near-Infrared Photoelectrical Response · Figure 7e
photoelectrical on/off ratio at 0.125 W/cm20.32Text
Rounded Reported
22508 · 3.5 Near-Infrared Photoelectrical Response · Figure 7e
photoelectrical response timeMarked as a best value within this paper5.1 sText
Rounded Reported
22508 · 3.5 Near-Infrared Photoelectrical Response · Figure S19b