ultrafast transient absorption
2025 · Metal-halide porous framework superlattices
PbI2@NU-1000 single crystals · Single Crystal · Pump 320 nm; probe 450-650 nm; sample dispersed in acetonitrile
Femtosecond, nanosecond, flash-photolysis and transient-absorption microscopy variants.
Every source method stays verbatim. Subtypes retain distinctions such as ATR versus transmission IR, powder versus single-crystal diffraction, and two- versus four-contact transport.
The same technique may serve transport, electrochemistry, sensing or another scientific purpose.
Filter source method wording, sample context and scientific purpose.
41 measurements
2025 · Metal-halide porous framework superlattices
PbI2@NU-1000 single crystals · Single Crystal · Pump 320 nm; probe 450-650 nm; sample dispersed in acetonitrile
2025 · Metal-halide porous framework superlattices
PbI2@PCN-606 single crystals · Single Crystal · Pump 320 nm; probe 450-650 nm; sample dispersed in acetonitrile
2025 · Metal-halide porous framework superlattices
PbI2@PCN-609 single crystals · Single Crystal · Pump 320 nm; probe 450-650 nm; sample dispersed in acetonitrile
2025 · Metal-halide porous framework superlattices
PbI2@PCN-700 single crystals · Single Crystal · Pump 320 nm; probe 450-650 nm; sample dispersed in acetonitrile
2025 · Semiconductive Coordination Polymer with Multi-Channel Charge Transfer for High-Performance Direct X-ray Detection
as-synthesised orange plate single crystals of 1 · Single Crystal · 400 nm pump; supercontinuum probe; main Figure 2 at 260 nJ; SI includes different laser powers.
2025 · Unveiling high-mobility hot carriers in a two-dimensional conjugated coordination polymer
large-area Cu3BHT film on fused silica · Thin Film · Pump/probe from PH1-20 and TOPAS-Twins; Nikon 10x objective; galvo scanning of probe beam relative to pump; spatially resolved charge population; main data at Nabs = 0.7 x 10^15 cm^-2.
2025 · Unveiling high-mobility hot carriers in a two-dimensional conjugated coordination polymer
large-area Cu3BHT film on fused silica · Thin Film · Helios pump-probe setup with 25 fs pulses, 1 kHz repetition; 1.77 eV photoexcitation at Nabs = 1.1 x 10^15 cm^-2 for main Figure 4a; tunable pump energies for SI.
2023 · Dominant Role of Hole Transport Pathway in Achieving Record High Photoconductivity in Two-Dimensional Metal–Organic Frameworks
Cu-HHTP film on glass substrate · Thin Film · 400 nm excitation; film sample on glass translated continuously; white-light probe 420-750 nm.
2023 · Dominant Role of Hole Transport Pathway in Achieving Record High Photoconductivity in Two-Dimensional Metal–Organic Frameworks
Cu/Zn-HHTP film on glass substrate · Thin Film · 400 nm excitation; Table S4 multiexponential fit at 470 and 680 nm.
2023 · Dominant Role of Hole Transport Pathway in Achieving Record High Photoconductivity in Two-Dimensional Metal–Organic Frameworks
Zn-HHTP film on glass substrate · Thin Film · 400 nm excitation; Table S4 multiexponential fit at 470 and 680 nm.
2023 · Engineering Band Gap and Photoconduction in Semiconducting Metal Organic Frameworks: Metal Node Effect
Fe-THQ film on glass · Thin Film · 450 nm excitation; white light probe 420-750 nm; film on glass translated to avoid degradation.
2023 · Engineering Band Gap and Photoconduction in Semiconducting Metal Organic Frameworks: Metal Node Effect
Ni-THQ film on glass · Thin Film · 450 nm excitation; white light probe 420-750 nm; film on glass translated to avoid degradation.
2023 · Regulating Crystallization and Lead Leakage of Perovskite Solar Cell Via Novel Polyoxometalate-Based Metal–Organic Framework
POMOF-functionalised perovskite film · Thin Film · GSB at 745-750 nm; normalised bleaching kinetics fitted bi-exponentially.
2022 · Boosting the Optoelectronic Performance by Regulating Exciton Behaviors in a Porous Semiconductive Metal-Organic Framework
RhB+@TbTATAB guest-loaded crystals · Powder · Powder samples pressed flat on quartz plate; 300 nm pump beam, 200 uW.
2022 · Bromo- and iodo-bridged building units in metal-organic frameworks for enhanced carrier transport and CO2 photoreduction by water vapor
As-synthesised TMOF-10-NH2(Br) · Single Crystal · Pump laser 385 nm; probe wavelength 430-770 nm; recovery kinetics fitted with biexponential function.
2022 · Bromo- and iodo-bridged building units in metal-organic frameworks for enhanced carrier transport and CO2 photoreduction by water vapor
As-synthesised TMOF-10-NH2(I) · Single Crystal · Pump laser 385 nm; probe wavelength 430-770 nm; recovery kinetics fitted with biexponential function.
2022 · Bromo- and iodo-bridged building units in metal-organic frameworks for enhanced carrier transport and CO2 photoreduction by water vapor
UiO-66(Zr)-NH2 benchmark · Powder · Same TA conditions as TMOF-10-NH2 samples.
2022 · Highly Effective Generation of Singlet Oxygen by an Imidazole-Linked Robust Photosensitizing Covalent Organic Framework
as-synthesized PyPor-COF powder · Powder · Pump-probe system; pump pulses at 400 nm; probe continuum 350-650 nm; delay region 100 fs to 7 ns.
2022 · Large π-Conjugated Metal-Organic Frameworks for Infrared-Light-Driven CO2Reduction
TNP-MOF crystals · Single Crystal · TNP linker and TNP-MOF compared under 510 nm pump; TNP-MOF also under 760 nm pump
2021 · Interplay of structural dynamics and electronic effects in an engineered assembly of pentacene in a metal-organic framework
Zn-Pn SURMOF-2 thin film · Thin Film · Excitation at 3.49 eV/355 nm; photon density 8.9 x 10^15 photons cm-2; quantum yield from TAS radical cation peak at 510-600 nm
2020 · A conductive metal-organic framework photoanode
Zn2TTFTB-TiO2 photoanode · Electrode · 450 nm excitation; transient cation probed at 680 nm; recombination fitted with stretched exponential plus long-lived component.
2020 · A conductive metal-organic framework photoanode
TTFTB-sensitized TiO2 · Electrode · 450 nm excitation; transient cation probed at 680 nm; stretched-exponential recombination fit.
2020 · Direct Evidence of Photoinduced Charge Transport Mechanism in 2D Conductive Metal Organic Frameworks
Cu-THQ film on glass for OTA · Thin Film · 450 nm pump, 0.75 uJ/pulse; white-light probe 420-750 nm; film on glass translated continuously.
2020 · Direct Evidence of Photoinduced Charge Transport Mechanism in 2D Conductive Metal Organic Frameworks
Cu/Zn-THQ film on glass for OTA · Thin Film · 450 nm excitation; Cu/Zn-THQ OTA spectra and exciton-bleach kinetics compared with Cu-THQ.
2020 · Direct Evidence of Photoinduced Charge Transport Mechanism in 2D Conductive Metal Organic Frameworks
THQ ligand in chloroform solution · Unknown · THQ ligand in chloroform solution used as molecular control.
2020 · Direct Evidence of Photoinduced Charge Transport Mechanism in 2D Conductive Metal Organic Frameworks
Zn-THQ film for OTA · Thin Film · Zn-THQ OTA following 450 nm excitation.
2020 · Metal-organic framework nanosheets for enhanced performance of organic photovoltaic cells
optimised P3HT-Zn2(ZnTCPP)-PCBM photovoltaic device · Thin Film · 800 nm, 40 fs, 10 kHz Ti:sapphire amplifier; 500 nm pump; probes spanning 350-750 nm and 850-1300 nm; pump fluence about 130 uJ cm-2; magic-angle polarisation.
2020 · Semiconducting Supramolecular Organic Frameworks Assembled from a Near-Infrared Fluorescent Macrocyclic Probe and Fullerenes
single crystals of (2*C60)n SOF · Single Crystal · Freshly grown single crystals packed between two quartz slides under nitrogen; excitation 676 nm.
2020 · Semiconducting Supramolecular Organic Frameworks Assembled from a Near-Infrared Fluorescent Macrocyclic Probe and Fullerenes
single crystals of (2*C70)n SOF · Single Crystal · Freshly grown single crystals packed between two quartz slides under nitrogen; excitation 676 nm.
2020 · Semiconducting Supramolecular Organic Frameworks Assembled from a Near-Infrared Fluorescent Macrocyclic Probe and Fullerenes
solution host-guest complex of 2 with C70 · Unknown · Benzonitrile solution, excitation 676 nm, 360 nJ, 298 K, delays between 1 and 5500 ps.
2020 · Semiconducting Supramolecular Organic Frameworks Assembled from a Near-Infrared Fluorescent Macrocyclic Probe and Fullerenes
solution host-guest complex of 2 with C70 · Unknown · Toluene solution, excitation 676 nm, 360 nJ, 298 K, delays between 1 and 5500 ps.
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Ni-CAT-1 thin film on quartz · Thin Film · 100 fs pump-probe; pump 400 nm for Figure 5 and 350 nm control in SI; probe broad-band white light; time delay up to 3 ns.
2015 · Confinement of single polysilane chains in coordination nanospaces
1a-PMPrS powder composite, 30 wt percent PMPrS · Powder · 355 nm excitation at 1.0 x 10^16 photons cm-2; spectra measured before and after adding MeOH quencher.
2015 · Confinement of single polysilane chains in coordination nanospaces
polycrystalline 1a-PMPrS in PMMA matrix on quartz for TRMC · Thin Film · 355 nm Nd:YAG laser pulse, 1.0 x 10^16 photons cm-2, microwave frequency about 9.1 GHz, power 3 mW, room temperature.
2015 · Confinement of single polysilane chains in coordination nanospaces
polycrystalline 1b-PMPrS in PMMA matrix on quartz for TRMC · Thin Film · 355 nm Nd:YAG laser pulse, 1.0 x 10^16 photons cm-2, microwave frequency about 9.1 GHz, power 3 mW, room temperature.
2015 · Confinement of single polysilane chains in coordination nanospaces
bulk PMPrS blended with PMMA/PDI for TRMC and TAS · Thin Film · 355 nm excitation at 1.0 x 10^16 photons cm-2; PDI 10 wt percent used to estimate quantum efficiency by donor-acceptor system.
2015 · Photoinduced Charge-Carrier Generation in Epitaxial MOF Thin Films: High Efficiency as a Result of an Indirect Electronic Band Gap?
Pd porphyrin Zn-SURMOF 2, 1 um FP-TRMC/TAS film · Thin Film · 355 nm Nd:YAG excitation, 5-8 ns pulse, 4.6-9.1 x 10^15 photons cm-2 pulse-1; microwave frequency 9.1 GHz and 3 mW; ambient room temperature.
2015 · Photoinduced Charge-Carrier Generation in Epitaxial MOF Thin Films: High Efficiency as a Result of an Indirect Electronic Band Gap?
Free-base porphyrin Zn-SURMOF 2, 1 um FP-TRMC/TAS film · Thin Film
2015 · Photoinduced Charge-Carrier Generation in Epitaxial MOF Thin Films: High Efficiency as a Result of an Indirect Electronic Band Gap?
Free-base porphyrin Zn-SURMOF 2 on quartz glass · Thin Film · Streak camera PL after approximately 400 nm excitation; TAS at 400 nm, 15 uJ cm-2, 700-750 nm window.
2015 · Photoinduced Charge-Carrier Generation in Epitaxial MOF Thin Films: High Efficiency as a Result of an Indirect Electronic Band Gap?
Pd porphyrin Zn-SURMOF 2 on quartz glass · Thin Film
2012 · High charge mobility in a tetrathiafulvalene-based microporous metal-organic framework
H4TTFTB/PMMA transient absorption film · Thin Film · 25 deg C ambient; H4TTFTB/PMMA 40/60 wt% film on quartz, ~500 nm thick; 355 nm Nd:YAG excitation, 6.1 x 10^15 cm^-2 photons per pulse; spectra averaged over 1600 streak-scope images.
No mapped measurement matches these filters.
These are the exact source-preserving method strings consolidated by this technique group.
| Raw method label | Mapped measurements |
|---|---|
| ultrafast transient absorption | 5 |
| Femtosecond optical transient absorption (OTA) spectroscopy | 4 |
| Femtosecond ultrafast transient absorption spectroscopy | 3 |
| femtosecond optical transient absorption (OTA) | 3 |
| Flash-photolysis time-resolved microwave conductivity coupled with transient absorption spectroscopy | 2 |
| Solid-state femtosecond transient absorption spectroscopy with global-target analysis | 2 |
| Femtosecond transient absorption spectroscopy with global-target analysis | 2 |
| Femtosecond transient absorption spectroscopy | 2 |
| Femtosecond optical transient absorption (OTA) | 2 |
| Flash-photolysis time-resolved microwave conductivity (FP-TRMC) with TAS-derived carrier generation yield | 2 |
| Transient absorption spectroscopy | 2 |
| nanosecond transient absorption spectroscopy (ns-TA) | 2 |
| femtosecond transient absorption spectroscopy | 2 |
| Femtosecond transient absorption | 1 |
| Flash photolysis transient absorption spectroscopy | 1 |
| FP-TRMC coupled with transient absorption spectroscopy; 355 nm excitation; 1 um film. | 1 |
| Time-resolved photoluminescence and transient absorption | 1 |
| Streak-camera time-resolved photoluminescence and transient absorption spectroscopy. | 1 |
| Transient absorption microscopy (TAM) | 1 |
| Transient absorption spectroscopy (TAS) | 1 |
| FP-TRMC and TAS in PMMA/PDI matrix | 1 |