Sensing Application — From Rigid to Flexible: Ce-BTC-MOF-Enabled Self-Powered Photodetectors with Record-High Responsivity and Detectivity

Measurement evidence

Sensing Application

From Rigid to Flexible: Ce-BTC-MOF-Enabled Self-Powered Photodetectors with Record-High Responsivity and Detectivity · Sun J., Gao S., Zhang C. et al. · ACS Applied Materials and Interfaces · 2025 · 55143-55152

3 measurement groups · 19 results

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

Self-powered photodetector I-T, I-V, photocurrent-power, responsivity, detectivity and oscilloscope response tests

p-Ce-BTC/n-Si self-powered photodetector · Electrode

0 V bias; monochromatic light 365-1000 nm at 1000 uW cm-2 for spectral response; 365 nm power-density series 100-1000 uW cm-2.

Geometry
p-Ce-BTC/n-Si heterojunction, Ag/Ce-BTC and In/n-Si contacts, effective area 4 mm2
Context
application device using pristine Ce-BTC active layer
Measurement source
5 · Results and Discussion · Figure 3 and Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ce-BTC/n-Si decay timeMarked as a best value within this paper0.176 ms (176 us)176 usTable
Exact Reported
8 · Table 1 · Table 1
Ce-BTC/n-Si maximum detectivityMarked as a best value within this paper3.88 x 10^12 Jones at 100 uW cm-2Table
Exact Reported
8 · Table 1 · Table 1
Ce-BTC/n-Si photodetector effective area4 mm20.04 cm2Text
Exact Reported
5 · Results and Discussion · Equation 1
wavelength of maximum Ce-BTC/n-Si photocurrentMarked as a best value within this paper365 nmText
Exact Reported
5 · Results and Discussion · Figure 3b
Ce-BTC/n-Si on/off ratio under 365 nm illumination6.02 x 10^3Text
Exact Reported
5 · Results and Discussion · Figure 3c
Ce-BTC/n-Si photocurrent power-law exponentIph proportional to P^0.61Text
Exact Reported
5 · Results and Discussion · Figure 3e
Ce-BTC/n-Si maximum responsivityMarked as a best value within this paper144 mA W-1 at 100 uW cm-20.144 A W-1Table
Exact Reported
8 · Table 1 · Table 1
Ce-BTC/n-Si rise timeMarked as a best value within this paper0.09 ms (90 us)90 usTable
Exact Reported
8 · Table 1 · Table 1
Ce-BTC/Si heterostructure typetype II heterostructureText
Qualitative
6 · Results and Discussion · Figure 4b-d

Continuous bending-angle I-T stability test

Flexible Ce-BTC/ZnO self-powered photodetector · Electrode

Ce-BTC/ZnO flexible device tested through 160 bending cycles under 365 nm UV illumination.

Geometry
flexible PI/ITO/ZnO/Ce-BTC/Ag device
Context
flexible composite application device
Measurement source
7 · Results and Discussion · Figure 6a and Figure S6
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
number of bending cycles160 consecutive testsText
Exact Reported
7 · Results and Discussion · Figure 6a
Ion/Ioff retention after 160 bending cyclesMarked as a best value within this paper98.6% of Ion/Ioff ratio without bending0.986 fractionText
Exact Reported
7 · Results and Discussion · Figure S6

Flexible self-powered photodetector I-T, I-V, photocurrent-power, responsivity, detectivity and oscilloscope response tests

Flexible Ce-BTC/ZnO self-powered photodetector · Electrode

0 V bias; 365-1000 nm illumination at 1000 uW cm-2; 365 nm power-density series 100-1000 uW cm-2.

Geometry
PI/ITO/ZnO/Ce-BTC/Ag vertical device, effective area 0.21 cm2
Context
flexible composite application device
Measurement source
7 · Results and Discussion · Figure 5 and Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ce-BTC/ZnO heterostructure typetype II heterostructureText
Qualitative
7 · Results and Discussion · Figure 6b
Ce-BTC/ZnO decay timeMarked as a best value within this paper3.9 msTable
Exact Reported
8 · Table 1 · Table 1
Ce-BTC/ZnO maximum detectivityMarked as a best value within this paper7.98 x 10^10 Jones at 100 uW cm-2Table
Exact Reported
8 · Table 1 · Table 1
Ce-BTC/ZnO effective device area0.21 cm2Text
Exact Reported
7 · Results and Discussion · Figure 5a
wavelength of maximum Ce-BTC/ZnO photocurrentMarked as a best value within this paper365 nmText
Exact Reported
7 · Results and Discussion · Figure 5b
Ce-BTC/ZnO photocurrent power-law exponentIph proportional to P^0.87Text
Exact Reported
7 · Results and Discussion · Figure 5e
Ce-BTC/ZnO maximum responsivityMarked as a best value within this paper2 mA W-1 at 100 uW cm-20.002 A W-1Table
Exact Reported
8 · Table 1 · Table 1
Ce-BTC/ZnO rise timeMarked as a best value within this paper3.5 msTable
Exact Reported
8 · Table 1 · Table 1