Harmonised techniqueNon-exclusive mapping

Transient absorption spectroscopy

Femtosecond, nanosecond, flash-photolysis and transient-absorption microscopy variants.

19primary papers
41mapped measurements
157linked results
21raw method labels
The harmonised label does not replace the method

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.

Measurement-family coverage

The same technique may serve transport, electrochemistry, sensing or another scientific purpose.

Mapped measurements

Filter source method wording, sample context and scientific purpose.

41 measurements

SpectroscopyUnspecified subtype

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

SpectroscopyUnspecified subtype

ultrafast transient absorption

2025 · Metal-halide porous framework superlattices

PbI2@PCN-606 single crystals · Single Crystal · Pump 320 nm; probe 450-650 nm; sample dispersed in acetonitrile

SpectroscopyUnspecified subtype

ultrafast transient absorption

2025 · Metal-halide porous framework superlattices

PbI2@PCN-609 single crystals · Single Crystal · Pump 320 nm; probe 450-650 nm; sample dispersed in acetonitrile

SpectroscopyUnspecified subtype

ultrafast transient absorption

2025 · Metal-halide porous framework superlattices

PbI2@PCN-700 single crystals · Single Crystal · Pump 320 nm; probe 450-650 nm; sample dispersed in acetonitrile

SpectroscopyFemtosecond

Femtosecond transient absorption spectroscopy

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.

Electrical TransportMicroscopy

Transient absorption microscopy (TAM)

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.

SpectroscopyUnspecified subtype

Transient absorption spectroscopy (TAS)

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.

SpectroscopyFemtosecond

femtosecond optical transient absorption (OTA)

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.

SpectroscopyFemtosecond

femtosecond optical transient absorption (OTA)

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.

SpectroscopyFemtosecond

femtosecond optical transient absorption (OTA)

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.

SpectroscopyFemtosecond

Femtosecond optical transient absorption (OTA)

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.

SpectroscopyFemtosecond

Femtosecond optical transient absorption (OTA)

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.

SpectroscopyFemtosecond

Femtosecond transient absorption spectroscopy

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.

SpectroscopyFemtosecond

Femtosecond transient absorption

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.

SpectroscopyFemtosecond

Femtosecond ultrafast transient absorption spectroscopy

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.

SpectroscopyFemtosecond

Femtosecond ultrafast transient absorption spectroscopy

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.

SpectroscopyFemtosecond

femtosecond transient absorption spectroscopy

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.

SpectroscopyUnspecified subtype

Transient absorption spectroscopy

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.

SpectroscopyUnspecified subtype

ultrafast transient absorption

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.

SpectroscopyUnspecified subtype

Transient absorption spectroscopy

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.

Electrical TransportUnspecified subtype

FP-TRMC and TAS in PMMA/PDI matrix

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.

Electrical TransportUnspecified subtype

Flash-photolysis time-resolved microwave conductivity coupled with transient absorption spectroscopy

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.

SpectroscopyUnspecified subtype

Time-resolved photoluminescence and transient absorption

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.

SpectroscopyFlash photolysis

Flash photolysis transient absorption spectroscopy

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.

Raw method vocabulary

These are the exact source-preserving method strings consolidated by this technique group.

Show 21 reported method labels
Raw method labelMapped measurements
ultrafast transient absorption5
Femtosecond optical transient absorption (OTA) spectroscopy4
Femtosecond ultrafast transient absorption spectroscopy3
femtosecond optical transient absorption (OTA)3
Flash-photolysis time-resolved microwave conductivity coupled with transient absorption spectroscopy2
Solid-state femtosecond transient absorption spectroscopy with global-target analysis2
Femtosecond transient absorption spectroscopy with global-target analysis2
Femtosecond transient absorption spectroscopy2
Femtosecond optical transient absorption (OTA)2
Flash-photolysis time-resolved microwave conductivity (FP-TRMC) with TAS-derived carrier generation yield2
Transient absorption spectroscopy2
nanosecond transient absorption spectroscopy (ns-TA)2
femtosecond transient absorption spectroscopy2
Femtosecond transient absorption1
Flash photolysis transient absorption spectroscopy1
FP-TRMC coupled with transient absorption spectroscopy; 355 nm excitation; 1 um film.1
Time-resolved photoluminescence and transient absorption1
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 matrix1