Other — Synthesis, characterization, electrical conductivity, and catalytic studies of some coordination polymers of salen-type schiff base

Measurement evidence

Other

Synthesis, characterization, electrical conductivity, and catalytic studies of some coordination polymers of salen-type schiff base · Pardhi A.V., Bansod A.D., Yaul A.R. et al. · Russian Journal of Coordination Chemistry/Koordinatsionnaya Khimiya · 2010 · 298-304

20 measurement groups · 78 results

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

Styrene epoxidation catalysis with aqueous 30% H2O2

[Co(BNESAP)(H2O)2]n compressed pellet · Pellet

Styrene 5.2 g in 5 ml acetonitrile; catalyst 0.025 g; 40 C; 24 h; organic layer analysed by Shimadzu 14B GC with SE-30 column and FID.

Temperature
313
Atmosphere
aqueous H2O2/acetonitrile
Geometry
50 ml flask with water condenser
Context
pristine catalyst application
Measurement source
300 · Catalytic study
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
styrene conversion15-20Text
Range
302 · Results and discussion
styrene oxide selectivity49.70-67.51Text
Range
302 · Results and discussion

Styrene epoxidation catalysis with aqueous 30% H2O2

[Fe(BNESAP)(H2O)2]n compressed pellet · Pellet

Styrene 5.2 g in 5 ml acetonitrile; catalyst 0.025 g; 40 C; 24 h; organic layer analysed by Shimadzu 14B GC with SE-30 column and FID.

Temperature
313
Atmosphere
aqueous H2O2/acetonitrile
Geometry
50 ml flask with water condenser
Context
pristine catalyst application
Measurement source
300 · Catalytic study
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
styrene conversion15-20Text
Range
302 · Results and discussion
styrene oxide selectivity49.70-67.51Text
Range
302 · Results and discussion

Styrene epoxidation catalysis with aqueous 30% H2O2

[Mn(BNESAP)(H2O)2]n compressed pellet · Pellet

Styrene 5.2 g in 5 ml acetonitrile; catalyst 0.025 g; 40 C; 24 h; organic layer analysed by Shimadzu 14B GC with SE-30 column and FID.

Temperature
313
Atmosphere
aqueous H2O2/acetonitrile
Geometry
50 ml flask with water condenser
Context
pristine catalyst application
Measurement source
300 · Catalytic study
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
styrene conversion15-20Text
Range
302 · Results and discussion
styrene oxide selectivity49.70-67.51Text
Range
302 · Results and discussion

Styrene epoxidation catalysis with aqueous 30% H2O2

[Ni(BNESAP)(H2O)2]n compressed pellet · Pellet

Styrene 5.2 g in 5 ml acetonitrile; catalyst 0.025 g; 40 C; 24 h; organic layer analysed by Shimadzu 14B GC with SE-30 column and FID.

Temperature
313
Atmosphere
aqueous H2O2/acetonitrile
Geometry
50 ml flask with water condenser
Context
pristine catalyst application
Measurement source
300 · Catalytic study
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
styrene conversion15-20Text
Range
302 · Results and discussion
styrene oxide selectivity49.70-67.51Text
Range
302 · Results and discussion

Elemental analysis and molecular-weight estimation

[Cd(BNESAP)]n compressed pellet · Pellet

Elemental contents reported as found/calculated percentages; molecular weight estimated considering one unit.

Temperature
room temperature
Atmosphere
air
Geometry
bulk powder/table sample
Context
pristine material
Measurement source
300 · Table 1 · Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
colourMid buffTable
Qualitative
300 · Table 1 · Table 1
elemental analysis found/calculatedM 18.96/19.15; C 56.23/57.30; H 3.23/3.78; N 14.15/14.32Table
Exact Reported
300 · Table 1 · Table 1
molecular weight586.924Table
Exact Reported
300 · Table 1 · Table 1

Elemental analysis and molecular-weight estimation

[Co(BNESAP)(H2O)2]n compressed pellet · Pellet

Elemental contents reported as found/calculated percentages; molecular weight estimated considering one unit.

Temperature
room temperature
Atmosphere
air
Geometry
bulk powder/table sample
Context
pristine material
Measurement source
300 · Table 1 · Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
colourLight brownTable
Qualitative
300 · Table 1 · Table 1
elemental analysis found/calculatedM 10.20/10.35; C 59.82/59.05; H 4.42/4.60; N 14.52/14.76Table
Exact Reported
300 · Table 1 · Table 1
molecular weight569.477Table
Exact Reported
300 · Table 1 · Table 1

Elemental analysis and molecular-weight estimation

[Cu(BNESAP)]n compressed pellet · Pellet

Elemental contents reported as found/calculated percentages; molecular weight estimated considering one unit.

Temperature
room temperature
Atmosphere
air
Geometry
bulk powder/table sample
Context
pristine material
Measurement source
300 · Table 1 · Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
colourOrange buffTable
Qualitative
300 · Table 1 · Table 1
elemental analysis found/calculatedM 11.20/11.81; C 62.21/62.50; H 4.03/4.12; N 15.45/15.62Table
Exact Reported
300 · Table 1 · Table 1
molecular weight538.660Table
Exact Reported
300 · Table 1 · Table 1

Elemental analysis and molecular-weight estimation

[Fe(BNESAP)(H2O)2]n compressed pellet · Pellet

Elemental contents reported as found/calculated percentages; molecular weight estimated considering one unit.

Temperature
room temperature
Atmosphere
air
Geometry
bulk powder/table sample
Context
pristine material
Measurement source
300 · Table 1 · Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
colourLeaf brownTable
Qualitative
300 · Table 1 · Table 1
elemental analysis found/calculatedM 9.70/9.86; C 59.32/59.38; H 4.52/4.63; N 14.02/14.14Table
Exact Reported
300 · Table 1 · Table 1
molecular weight566.389Table
Exact Reported
300 · Table 1 · Table 1

Elemental analysis and molecular-weight estimation

H2BNESAP compressed pellet · Pellet

Elemental contents reported as found/calculated percentages; molecular weight estimated considering one unit.

Temperature
room temperature
Atmosphere
air
Geometry
bulk powder/table sample
Context
pristine material
Measurement source
300 · Table 1 · Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
colourBrownTable
Qualitative
300 · Table 1 · Table 1
elemental analysis found/calculatedC 70.20/70.57; H 4.82/5.08; N 17.35/17.64Table
Exact Reported
300 · Table 1 · Table 1
molecular weight476.569Table
Exact Reported
300 · Table 1 · Table 1

Elemental analysis and molecular-weight estimation

[Mn(BNESAP)(H2O)2]n compressed pellet · Pellet

Elemental contents reported as found/calculated percentages; molecular weight estimated considering one unit.

Temperature
room temperature
Atmosphere
air
Geometry
bulk powder/table sample
Context
pristine material
Measurement source
300 · Table 1 · Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
colourDark brownTable
Qualitative
300 · Table 1 · Table 1
elemental analysis found/calculatedM 9.50/9.72; C 59.30/59.47; H 4.45/4.63; N 14.66/14.86Table
Exact Reported
300 · Table 1 · Table 1
molecular weight565.482Table
Exact Reported
300 · Table 1 · Table 1

Elemental analysis and molecular-weight estimation

[Ni(BNESAP)(H2O)2]n compressed pellet · Pellet

Elemental contents reported as found/calculated percentages; molecular weight estimated considering one unit.

Temperature
room temperature
Atmosphere
air
Geometry
bulk powder/table sample
Context
pristine material
Measurement source
300 · Table 1 · Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
colourCopper leafTable
Qualitative
300 · Table 1 · Table 1
elemental analysis found/calculatedM 10.11/10.31; C 62.19/59.88; H 4.25/4.60; N 14.57/14.76Table
Exact Reported
300 · Table 1 · Table 1
molecular weight569.237Table
Exact Reported
300 · Table 1 · Table 1

Elemental analysis and molecular-weight estimation

[Zn(BNESAP)]n compressed pellet · Pellet

Elemental contents reported as found/calculated percentages; molecular weight estimated considering one unit.

Temperature
room temperature
Atmosphere
air
Geometry
bulk powder/table sample
Context
pristine material
Measurement source
300 · Table 1 · Table 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
colourLeaf brownTable
Qualitative
300 · Table 1 · Table 1
elemental analysis found/calculatedM 12.15/12.11; C 62.05/62.29; H 4.02/4.11; N 15.40/15.57Table
Exact Reported
300 · Table 1 · Table 1
molecular weight539.904Table
Exact Reported
300 · Table 1 · Table 1

Thermogravimetric analysis with Broido and Coats-Redfern kinetic analysis

[Cd(BNESAP)]n compressed pellet · Pellet

TG analyses made from 40-700 C at heating rate 10 C min^-1 using gamma-Al2O3 reference on a PerkinElmer TGS-2 system.

Temperature
313-973 nominal TG range
Atmosphere
air/not specified
Geometry
bulk powder
Context
pristine material
Measurement source
300 · Physical measurements · Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Broido activation energy step 136.85Table
Exact Reported
302 · Table 2 · Table 2
Broido activation energy step 265.14Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 129.62Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 262.21Table
Exact Reported
302 · Table 2 · Table 2
half decomposition temperature250Table
Exact Reported
302 · Table 2 · Table 2

Thermogravimetric analysis with Broido and Coats-Redfern kinetic analysis

[Co(BNESAP)(H2O)2]n compressed pellet · Pellet

TG analyses made from 40-700 C at heating rate 10 C min^-1 using gamma-Al2O3 reference on a PerkinElmer TGS-2 system.

Temperature
313-973 nominal TG range
Atmosphere
air/not specified
Geometry
bulk powder
Context
pristine material
Measurement source
300 · Physical measurements · Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Broido activation energy step 137.16Table
Exact Reported
302 · Table 2 · Table 2
Broido activation energy step 227.54Table
Exact Reported
302 · Table 2 · Table 2
Broido activation energy step 385.01Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 138.23Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 229.23Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 380.23Table
Exact Reported
302 · Table 2 · Table 2
half decomposition temperature330Table
Exact Reported
302 · Table 2 · Table 2

Thermogravimetric analysis with Broido and Coats-Redfern kinetic analysis

[Cu(BNESAP)]n compressed pellet · Pellet

TG analyses made from 40-700 C at heating rate 10 C min^-1 using gamma-Al2O3 reference on a PerkinElmer TGS-2 system.

Temperature
313-973 nominal TG range
Atmosphere
air/not specified
Geometry
bulk powder
Context
pristine material
Measurement source
300 · Physical measurements · Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Broido activation energy step 135.12Table
Exact Reported
302 · Table 2 · Table 2
Broido activation energy step 265.15Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 131.25Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 260.23Table
Exact Reported
302 · Table 2 · Table 2
half decomposition temperature421Table
Exact Reported
302 · Table 2 · Table 2

Thermogravimetric analysis with Broido and Coats-Redfern kinetic analysis

[Fe(BNESAP)(H2O)2]n compressed pellet · Pellet

TG analyses made from 40-700 C at heating rate 10 C min^-1 using gamma-Al2O3 reference on a PerkinElmer TGS-2 system.

Temperature
313-973 nominal TG range
Atmosphere
air/not specified
Geometry
bulk powder
Context
pristine material
Measurement source
300 · Physical measurements · Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Broido activation energy step 140.12Table
Exact Reported
302 · Table 2 · Table 2
Broido activation energy step 223.12Table
Exact Reported
302 · Table 2 · Table 2
Broido activation energy step 372.13Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 139.35Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 217.29Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 389.92Table
Exact Reported
302 · Table 2 · Table 2
half decomposition temperature250Table
Exact Reported
302 · Table 2 · Table 2

Thermogravimetric analysis with Broido and Coats-Redfern kinetic analysis

H2BNESAP compressed pellet · Pellet

TG analyses made from 40-700 C at heating rate 10 C min^-1 using gamma-Al2O3 reference on a PerkinElmer TGS-2 system.

Temperature
313-973 nominal TG range
Atmosphere
air/not specified
Geometry
bulk powder
Context
pristine material
Measurement source
300 · Physical measurements · Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Broido activation energy step 132.51Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 130.82Table
Exact Reported
302 · Table 2 · Table 2
half decomposition temperature140Table
Exact Reported
302 · Table 2 · Table 2

Thermogravimetric analysis with Broido and Coats-Redfern kinetic analysis

[Mn(BNESAP)(H2O)2]n compressed pellet · Pellet

TG analyses made from 40-700 C at heating rate 10 C min^-1 using gamma-Al2O3 reference on a PerkinElmer TGS-2 system.

Temperature
313-973 nominal TG range
Atmosphere
air/not specified
Geometry
bulk powder
Context
pristine material
Measurement source
300 · Physical measurements · Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Broido activation energy step 139.33Table
Exact Reported
302 · Table 2 · Table 2
Broido activation energy step 221.12Table
Exact Reported
302 · Table 2 · Table 2
Broido activation energy step 384.89Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 132.82Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 225.75Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 386.90Table
Exact Reported
302 · Table 2 · Table 2
half decomposition temperature230Table
Exact Reported
302 · Table 2 · Table 2

Thermogravimetric analysis with Broido and Coats-Redfern kinetic analysis

[Ni(BNESAP)(H2O)2]n compressed pellet · Pellet

TG analyses made from 40-700 C at heating rate 10 C min^-1 using gamma-Al2O3 reference on a PerkinElmer TGS-2 system.

Temperature
313-973 nominal TG range
Atmosphere
air/not specified
Geometry
bulk powder
Context
pristine material
Measurement source
300 · Physical measurements · Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Broido activation energy step 145.10Table
Exact Reported
302 · Table 2 · Table 2
Broido activation energy step 229.36Table
Exact Reported
302 · Table 2 · Table 2
Broido activation energy step 389.81Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 142.65Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 231.25Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 374.47Table
Exact Reported
302 · Table 2 · Table 2
half decomposition temperature350Table
Exact Reported
302 · Table 2 · Table 2

Thermogravimetric analysis with Broido and Coats-Redfern kinetic analysis

[Zn(BNESAP)]n compressed pellet · Pellet

TG analyses made from 40-700 C at heating rate 10 C min^-1 using gamma-Al2O3 reference on a PerkinElmer TGS-2 system.

Temperature
313-973 nominal TG range
Atmosphere
air/not specified
Geometry
bulk powder
Context
pristine material
Measurement source
300 · Physical measurements · Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Broido activation energy step 133.15Table
Exact Reported
302 · Table 2 · Table 2
Broido activation energy step 267.15Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 130.32Table
Exact Reported
302 · Table 2 · Table 2
Coats-Redfern activation energy step 262.36Table
Exact Reported
302 · Table 2 · Table 2
half decomposition temperature370Table
Exact Reported
302 · Table 2 · Table 2