Microscopy Morphology — Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands

Measurement evidence

Microscopy Morphology

Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands · Yin C., Bao Z., Tan H. et al. · Chemical Engineering Journal · 2019 · 408-419

12 measurement groups · 18 results

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

SEM; HRTEM; SAED; elemental mapping

BCA-LNMO powder · Powder

Morphology and lattice imaging of prepared LNMO powders.

Context
derived LNMO powder
Measurement source
3-4 · 3. Results and discussion · Figs. 2-3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
LNMO morphologytruncated octahedral particlesText
Qualitative
3 · 3. Results and discussion · Fig. 2
LNMO particle size range200 nm to 1.5 umText
Range
3 · 3. Results and discussion · Fig. 2

SEM

BCA-Ni-Mn-MOFs · Powder

Morphology of hydrothermally prepared Ni-Mn-MOF precursor.

Context
pristine MOF precursor powder
Measurement source
3 · 3. Results and discussion · Fig. 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MOF precursor morphologyspherical particles with diameter 12 umText
Qualitative
3 · 3. Results and discussion · Fig. 1

SEM; HRTEM; SAED; elemental mapping

DTA-LNMO powder · Powder

Morphology and lattice imaging of prepared LNMO powders.

Context
derived LNMO powder
Measurement source
3-4 · 3. Results and discussion · Figs. 2-3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
LNMO morphologytruncated octahedral particlesText
Qualitative
3 · 3. Results and discussion · Fig. 2
LNMO particle size range200 nm to 1.5 umText
Range
3 · 3. Results and discussion · Fig. 2

SEM

DTA-Ni-Mn-MOFs · Powder

Morphology of hydrothermally prepared Ni-Mn-MOF precursor.

Context
pristine MOF precursor powder
Measurement source
3 · 3. Results and discussion · Fig. 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MOF precursor morphologyshuttle-type particles of about 200 nmText
Qualitative
3 · 3. Results and discussion · Fig. 1

SEM; HRTEM; SAED; elemental mapping

OBA-LNMO powder · Powder

Morphology and lattice imaging of prepared LNMO powders.

Context
derived LNMO powder
Measurement source
3-4 · 3. Results and discussion · Figs. 2-3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
LNMO morphologytruncated octahedral particlesText
Qualitative
3 · 3. Results and discussion · Fig. 2
LNMO particle size range200 nm to 1.5 umText
Range
3 · 3. Results and discussion · Fig. 2

SEM

OBA-Ni-Mn-MOFs · Powder

Morphology of hydrothermally prepared Ni-Mn-MOF precursor.

Context
pristine MOF precursor powder
Measurement source
3 · 3. Results and discussion · Fig. 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MOF precursor morphology2 um long micro-stripsText
Qualitative
3 · 3. Results and discussion · Fig. 1

SEM; HRTEM; SAED; elemental mapping

PTA-LNMO powder · Powder

Morphology and lattice imaging of prepared LNMO powders.

Context
derived LNMO powder
Measurement source
3-4 · 3. Results and discussion · Figs. 2-3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
LNMO morphologytruncated octahedral particlesText
Qualitative
3 · 3. Results and discussion · Fig. 2
LNMO particle size range200 nm to 1.5 umText
Range
3 · 3. Results and discussion · Fig. 2

SEM

PTA-Ni-Mn-MOFs · Powder

Morphology of hydrothermally prepared Ni-Mn-MOF precursor.

Context
pristine MOF precursor powder
Measurement source
3 · 3. Results and discussion · Fig. 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MOF precursor morphologychain-like nanoribbons, breadth 160 nmText
Qualitative
3 · 3. Results and discussion · Fig. 1

SEM; HRTEM; SAED; elemental mapping

PTCDA-LNMO powder · Powder

Morphology and lattice imaging of prepared LNMO powders.

Context
derived LNMO powder
Measurement source
3-4 · 3. Results and discussion · Figs. 2-3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
LNMO morphologyreverse double triangular pyramid-like morphology / regular octahedron shape discussed for cyclingText
Qualitative
3 · 3. Results and discussion · Fig. 2
LNMO particle size range200 nm to 1.5 umText
Range
3 · 3. Results and discussion · Fig. 2

SEM

PTCDA-Ni-Mn-MOFs · Powder

Morphology of hydrothermally prepared Ni-Mn-MOF precursor.

Context
pristine MOF precursor powder
Measurement source
3 · 3. Results and discussion · Fig. 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MOF precursor morphologyirregular nanosheetsText
Qualitative
3 · 3. Results and discussion · Fig. 1

SEM; HRTEM; SAED; elemental mapping

TCA-LNMO powder · Powder

Morphology and lattice imaging of prepared LNMO powders.

Context
derived LNMO powder
Measurement source
3-4 · 3. Results and discussion · Figs. 2-3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
LNMO morphologytruncated octahedral particlesText
Qualitative
3 · 3. Results and discussion · Fig. 2
LNMO particle size range200 nm to 1.5 umText
Range
3 · 3. Results and discussion · Fig. 2

SEM

TCA-Ni-Mn-MOFs · Powder

Morphology of hydrothermally prepared Ni-Mn-MOF precursor.

Context
pristine MOF precursor powder
Measurement source
3 · 3. Results and discussion · Fig. 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MOF precursor morphology2 um long micro-stripsText
Qualitative
3 · 3. Results and discussion · Fig. 1