H3I3N2 is an inorganic ceramic compound composed of hydrogen, iodine, and nitrogen elements; its specific crystal structure and phase relationships are not widely documented in standard engineering literature, suggesting this may be a research-phase or specialized compound. This material appears relevant to niche applications in solid-state chemistry, energy storage, or halide-based ceramic systems where iodine-containing phases offer potential advantages in ionic conductivity or thermal stability. Engineers would consider this material primarily in experimental contexts—such as solid electrolytes, advanced sensor materials, or specialty catalytic supports—rather than conventional structural or thermal applications.
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| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Bulk Modulus(K) | 15.58 | GPa | — | ||
Poisson's Ratio(ν) | 0.2800 | - | — | ||
Shear Modulus(G) | 9.790 | GPa | — |
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Density(ρ) | 4.134 | kg/m³ | — |
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Band Gap(Eg) | 0.6420 | eV | — | ||
Magnetic Moment(μB) | 0.000 | µB | — |
| Property | Value | Unit | Conditions | Source | |
|---|---|---|---|---|---|
Energy Above Hull(ΔEhull) | 0.3459 | eV/atom | — | ||
Formation Energy(ΔHf) | 0.1151 | eV/atom | — |