Other — Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications

Measurement evidence

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Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications · Hsieh P.-F., Law Z.X., Lin C.-H. et al. · Langmuir · 2022 · 4415-4424

35 measurement groups · 35 results

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

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu0.3BTC-100-8 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.006Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-100-14 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.021Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-100-20 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.023Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-100-3 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.009Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-100-5 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.008Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-100-8 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.019Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-120-14 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.031Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-120-20 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.033Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-120-3 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.022Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-120-5 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.028Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-120-8 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.028Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-80-14 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.014Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-80-20 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.011Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-80-3 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.005Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-80-5 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.008Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu1BTC-80-8 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacity0.008Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

CO2 pulse adsorption by temperature-programmed chemisorption

1Cu3BTC-100-8 · Powder

ASAP 2920; 200 mg sample degassed under He at 120 deg C for 30 min; 0.5 mL CO2 pulses repeatedly injected at 35 deg C and 1 atm until no further uptake.

Context
pristine Cu-MOF colloid
Measurement source
4418 · Materials and Methods · Figure 5; Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CO2 uptake capacityMarked as a best value within this paper0.035Text
Exact Reported
4420-4421 · Results and Discussion · Figure 5

Electrospray-differential mobility analysis (ES-DMA)

1Cu0.3BTC-100-8 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg151.0 +/- 0.5+/- 0.5 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-100-14 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg182.9 +/- 2.9+/- 2.9 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-100-20 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg187.6 +/- 3.1+/- 3.1 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-100-3 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg165.9 +/- 3.3+/- 3.3 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-100-5 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg174.2 +/- 6.3+/- 6.3 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-100-8 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg176.4 +/- 4.3+/- 4.3 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-120-14 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg189.5 +/- 1.7+/- 1.7 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-120-20 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg193.4 +/- 2.0+/- 2.0 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-120-3 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg177.6 +/- 2.5+/- 2.5 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-120-5 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg181.8 +/- 0.5+/- 0.5 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-120-8 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg186.5 +/- 1.9+/- 1.9 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-80-14 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg169.8 +/- 1.6+/- 1.6 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-80-20 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg172.1 +/- 3.6+/- 3.6 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-80-3 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg154.0 +/- 1.6+/- 1.6 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-80-5 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg158.1 +/- 1.3+/- 1.3 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu1BTC-80-8 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg162.4 +/- 0.3+/- 0.3 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

1Cu3BTC-100-8 · Powder

Cu-MOF colloids diluted 10-1000 times in dilute nitric acid aqueous solution (pH 5), electrosprayed, neutralised with Po-210, classified by DMA and counted by CPC; Table 2 reports dp,m,avg.

Context
pristine Cu-MOF colloid
Measurement source
4417 · Materials and Methods · Figure 1; Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg187.8 +/- 5.3+/- 5.3 nmTable
Exact Reported
4418 · Results and Discussion · Table 2

Electrospray-differential mobility analysis (ES-DMA)

3Cu1BTC-100-8 · Powder

SI Section 7 copper-source variant; mobility size distribution in Figure S13a.

Context
pristine Cu-MOF colloid
Measurement source
S16 · Material characterization of the Cu-MOF prepared by a different amount of copper · Figure S13a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
average mobility particle size dp,m,avg181.7 +/- 0.5+/- 0.5 nmText
Exact Reported
S16 · Material characterization of the Cu-MOF prepared by a different amount of copper · Figure S13a