Other — Reversible Molecule Interactions Enable Ultrastretchable and Recyclable Ionogels for Wearable Piezoionic Sensors

Measurement evidence

Other

Reversible Molecule Interactions Enable Ultrastretchable and Recyclable Ionogels for Wearable Piezoionic Sensors · Chen Y., Chen Y., Gao R. et al. · ACS Applied Materials and Interfaces · 2024 · 50027-50035

2 measurement groups · 5 results

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

Supporting Information mechanical comparison table

optimal 5 wt% UiO-66-NH2@PAA / 30 wt% [EMIM][EtSO4] ionogel · Thin Film

Table S1 compares tensile stress, breaking elongation and recycle status for this ionogel against literature ionogels.

Geometry
ionogel film
Context
optimal MOF-containing ionogel
Measurement source
S6 · Supporting Information · Table S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Table S1 recycle status for this workMarked as a best value within this paperO (recyclable)SI Table
Qualitative
S6 · Supporting Information · Table S1

Universal tensile testing

flexible ionogel composition series · Thin Film

INSTRON 5967 at room temperature; ionogel sheets cut to 4 cm x 1 cm, 20 mm effective length; 20 mm/min moving speed.

Temperature
room temperature
Atmosphere
ambient/not specified
Geometry
rectangular ionogel strips
Context
blank and UiO-66-NH2@PAA-containing ionogels
Measurement source
50028; 50030 · 2.1.2; 3.2 · Figure 2b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
blank ionogel breaking elongation510%Text
Rounded Reported
50030 · 3.2 · Figure 2b
blank ionogel tensile modulus5.09 MPaText
Exact Reported
50030 · 3.2 · Figure 2b
breaking elongation of optimal MOF ionogelMarked as a best value within this paper850%Text
Rounded Reported
50030 · 3.2 · Figure 2b
ultimate tensile strength of optimal MOF ionogelMarked as a best value within this paper11 MPaText
Rounded Reported
50030 · 3.2 · Figure 2b