Diffraction Structure — Conductivity, doping, and redox chemistry of a microporous dithiolene-based metal-organic framework

Measurement evidence

Diffraction Structure

Conductivity, doping, and redox chemistry of a microporous dithiolene-based metal-organic framework · Kobayashi Y., Jacobs B., Allendorf M.D. et al. · Chemistry of Materials · 2010 · 4120-4122

1 measurement group · 8 results

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

Powder X-ray diffraction

Desolvated Cu[Ni(pdt)2] powder · Powder

PXRD patterns compared for Cu[Cu(pdt)2] and Cu[Ni(pdt)2] as prepared, after 120 degC vacuum treatments, and after iodine doping.

Atmosphere
As prepared, dynamic vacuum, or I2 vapour depending on trace
Context
activated and doped pristine frameworks
Measurement source
6 · X-ray diffraction · Figure S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu[Cu(pdt)2] a lattice parameter6.8222(4) A(4)Text
Exact Reported
6 · X-ray diffraction · Figure S1
Cu[Cu(pdt)2] c lattice parameter16.5165(16) A(16)Text
Exact Reported
6 · X-ray diffraction · Figure S1
Cu[Cu(pdt)2] room-temperature conductivity cited from prior work1 x 10-4 S/cmText
Rounded Reported
1 · Main text
Cu[Cu(pdt)2] collapse on desolvationCu[Cu(pdt)2] collapses under desolvating conditions.Qualitative
Qualitative
6 · X-ray diffraction · Figure S1
Cu[Ni(pdt)2] a lattice parameter6.82870(30) A(30)Text
Exact Reported
6 · X-ray diffraction · Figure S1
Cu[Ni(pdt)2] c lattice parameter16.2176(12) A(12)Text
Exact Reported
6 · X-ray diffraction · Figure S1
Cu[Ni(pdt)2] structural stability after desolvation and I2 exposureCu[Ni(pdt)2] remains structurally stable after desolvation and after exposure to I2 vapour.Qualitative
Qualitative
6 · X-ray diffraction · Figure S1
PXRD space group assignmentP42/mmc (S. G. no. 131)Text
Exact Reported
6 · X-ray diffraction · Figure S1