Other — Boosting the Optoelectronic Performance by Regulating Exciton Behaviors in a Porous Semiconductive Metal-Organic Framework

Measurement evidence

Other

Boosting the Optoelectronic Performance by Regulating Exciton Behaviors in a Porous Semiconductive Metal-Organic Framework · Liang C., Cheng L., Zhang S. et al. · Journal of the American Chemical Society · 2022 · 2189-2196

1 measurement group · 3 results

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

Adsorption kinetics fitted with pseudo-second-order kinetic model

RhB+@TbTATAB guest-loaded crystals · Powder

80 mL 0.1 mmol/L RhB solution containing 200 mg TbTATAB; UV-vis standard curve at 553 nm from c1 to c5.

Context
RhB+ loading into parent MOF.
Measurement source
p004 / article p2192 · Energy Transfer and Charge Transfer · Figures S9-S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
RhB+ adsorbed content in MOFMarked as a best value within this paper16.42 mg/gText
Exact Reported
p004 / article p2192 · Energy Transfer and Charge Transfer · Figures S9-S14
RhB+ amount per mol TbTATAB66.5 mmol of RhB+/mol of TbTATABText
Exact Reported
p004 / article p2192 · Energy Transfer and Charge Transfer · Figures S9-S14
RhB UV-vis standard curve slope at 553 nmy = 77.8704x + 0.01489, R2 = 0.9999R2 = 0.9999Figure Axis
Exact Reported
p011 / SI S9 · Supplementary figures · Figure S13