Microscopy Morphology — Li-TFSI endohedral Metal-Organic frameworks in stable perovskite solar cells for Anti-Deliquescent and restricting ion migration

Measurement evidence

Microscopy Morphology

Li-TFSI endohedral Metal-Organic frameworks in stable perovskite solar cells for Anti-Deliquescent and restricting ion migration · Wang J., Zhang J., Yang Y. et al. · Chemical Engineering Journal · 2022 · 132481

3 measurement groups · 11 results

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

SEM, AFM and water contact angle

Li-TFSI@NH2-MIL-101 doped HTL film, 15 mg mL-1 · Thin Film

comparison of conventional Li-TFSI and Li-TFSI@NH2-MIL-101 doped HTL films

Measurement source
4 · 2.2. The effect ... on HTL · Fig. 3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
water contact angle, Li-TFSI doped HTL74.53 degreesText
Exact Reported
4 · 2.2. The effect ... on HTL · Fig. 3a inset
water contact angle, Li-TFSI@NH2-MIL-101 doped HTL84.6 degreesText
Exact Reported
4 · 2.2. The effect ... on HTL · Fig. 3b inset
KPFM CPD comparisonCPD of Li-TFSI@NH2-MIL-101 doped HTL higher than Li-TFSI doped HTLQualitative
Qualitative
4 · 2.2. The effect ... on HTL · Fig. 3e-f
RMS roughness, Li-TFSI doped HTL3.48 nmText
Exact Reported
4 · 2.2. The effect ... on HTL · Fig. 3c
RMS roughness, Li-TFSI@NH2-MIL-101 doped HTL11.2 nmText
Exact Reported
4 · 2.2. The effect ... on HTL · Fig. 3d

SEM, TEM and EDX mapping

Li-TFSI@NH2-MIL-101 powder · Powder

Li-TFSI loaded NH2-MIL-101 powder

Measurement source
2 · 2.1. Preparation and characterization · Fig. 1c-d
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
EDX distribution of Li-TFSI indicatorshomogeneous distribution of S, F and FeQualitative
Qualitative
2 · 2.1. Preparation and characterization · Fig. 1d
Li-TFSI@NH2-MIL-101 particle size upper bound50 to 200 nm (structure/crystal size unchanged)Text
Range
2 · 2.1. Preparation and characterization · Fig. 1c; Fig. S1
Li-TFSI@NH2-MIL-101 particle size lower bound50 to 200 nm (structure/crystal size unchanged)Text
Range
2 · 2.1. Preparation and characterization · Fig. 1c; Fig. S1
structure/crystal size retention after loadingstructure and crystal size not changedQualitative
Qualitative
2 · 2.1. Preparation and characterization · Fig. 1c; Fig. S1

SEM and TEM

Pristine NH2-MIL-101 nanocrystals · Powder

as-prepared pristine MOF nanocrystals

Measurement source
2 · 2.1. Preparation and characterization · Fig. 1b; Fig. S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
pristine NH2-MIL-101 particle size upper bound50 to 200 nmText
Range
2 · 2.1. Preparation and characterization · Fig. 1b; Fig. S1
pristine NH2-MIL-101 particle size lower bound50 to 200 nmText
Range
2 · 2.1. Preparation and characterization · Fig. 1b; Fig. S1