Other — Tuning the Electrical Conductivity of Bimetallic Co–Mn-Based MOFs via Precisely Regulating the Atomic Content of Metal Centers and Study on Their Dye Adsorption Properties

Measurement evidence

Other

Tuning the Electrical Conductivity of Bimetallic Co–Mn-Based MOFs via Precisely Regulating the Atomic Content of Metal Centers and Study on Their Dye Adsorption Properties · Hazarika U.N., Sonowal K., Mostako A.T.T. et al. · Inorganic Chemistry · 2025 · 15748-15759

8 measurement groups · 21 results

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

UV-visible dye adsorption assay

As-synthesised MOF1-MOF9 bulk series · Powder

Rhodamine B and methylene blue tested as positively charged dyes; no spectral change observed.

Measurement source
main p.8, article p.15755 · Results and discussion · Figure S9
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
affinity toward RhB and MBno adsorption affinity toward positively charged Rhodamine B and methylene blueText
Qualitative
main p.8, article p.15755 · Results and discussion · Figure S9

Methyl blue desorption/release assay

As-synthesised MOF1-MOF9 bulk series · Powder

20 mg each MOF loaded from 30 mL of 15 ppm methanolic MeB for 1 h, then released in 30 mL methanol; absorbance recorded at room temperature.

Measurement source
main p.9, article p.15756 · 3.3 Desorption/Release Study of Dyes · Figure S13
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MeB desorption efficiency after 4 h20-23% of adsorbed dye molecules released in 4 hText
Range
main p.9, article p.15756 · 3.3 Desorption/Release Study of Dyes · Figure S13

UV-visible dye adsorption assay

As-synthesised MOF1-MOF9 bulk series · Powder

Methyl orange adsorption under same parameters as MeB adsorption; sample attribution reported at series level.

Measurement source
main p.8, article p.15755 · Results and discussion · Figure S8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
methyl orange adsorption efficiency after 1 h68%Text
Rounded Reported
main p.8, article p.15755 · Results and discussion · Figure S8

UV-visible dye adsorption assay

As-synthesised MOF1 · Powder

20 mg MOF in 30 mL of 15 ppm methanolic methyl blue solution; absorbance followed for 1 h.

Context
dye adsorption application
Measurement source
main p.8, article p.15755 · Results and discussion · Figure 12; Table 4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MOF1 methyl blue adsorption efficiency after 1 hMarked as a best value within this paper83%Table
Exact Reported
main p.8, article p.15755 · Results and discussion · Table 4

Adsorption isotherm fitting

As-synthesised MOF1 · Powder

Methyl blue adsorption onto MOF1 fitted to Langmuir and Freundlich isotherms.

Measurement source
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 6; Figure S12
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Freundlich KF12.873Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 6
Freundlich nF2.169Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 6
Freundlich R20.984Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 6
Langmuir KL407.219Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 6
Langmuir qmax52.083Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 6
Langmuir R20.999Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 6
Langmuir RL0.00016Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 6

Adsorption kinetic fitting

As-synthesised MOF1 · Powder

Methyl blue adsorption onto MOF1 fitted to PFO and PSO models.

Measurement source
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 5; Figure S11
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
PFO K10.637Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 5
PFO qcal11959.14Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 5
PFO qexp18.889Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 5
PFO R20.844Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 5
PSO K21867.63Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 5
PSO qcal20.283Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 5
PSO qexp18.889Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 5
PSO R20.999Table
Exact Reported
main p.9, article p.15756 · 3.2 Kinetics and Adsorption Isotherms · Table 5

UV-visible dye adsorption assay

As-synthesised MOF3 · Powder

20 mg MOF in 30 mL of 15 ppm methanolic methyl blue solution; absorbance followed for 1 h.

Context
dye adsorption application
Measurement source
main p.8, article p.15755 · Results and discussion · Figure 12; Table 4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MOF3 methyl blue adsorption efficiency after 1 h78%Table
Exact Reported
main p.8, article p.15755 · Results and discussion · Table 4

UV-visible dye adsorption assay

As-synthesised MOF8 · Powder

20 mg MOF in 30 mL of 15 ppm methanolic methyl blue solution; absorbance followed for 1 h.

Context
dye adsorption application
Measurement source
main p.8, article p.15755 · Results and discussion · Figure 12; Table 4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MOF8 methyl blue adsorption efficiency after 1 h80%Table
Exact Reported
main p.8, article p.15755 · Results and discussion · Table 4