The first example of polytypism in the I–II–V semiconductors has been demonstrated with the synthesis of cubic LiZnSb by a low-temperature solution-phase method. This phase exhibits a unique coloring pattern that is novel for this class of compounds. The choice of site configuration has a considerable impact on the band structure of these materials, which in turn affects the transport properties. While the hexagonal polytype has been suggested as a promising n-type and extremely poor p-type thermoelectric material, the cubic analogue is calculated to have high efficiencies for both the n- and p-type derivatives (1.64 and 1.43, respectively, at 600 K). Furthermore, the cubic phase is found to be the energetically favored polytype. This surpr...
Thermoelectric power generation represents a promising approach to utilize waste heat. The most effe...
Zintl phases are an extremely broad class of compounds that are charge balanced semiconductors. The...
Polycrystalline L4Sb3 (L = La, Ce, Sm, and Yb) and Yb4−x Sm x Sb3, which crystallizes in the anti-Th...
In response to theoretical calculations on the thermoelectric performance of LiZnSb, we report the p...
Understanding and controlling the defect chemistry of bulk materials can vastly increase the opportu...
Soft chemistry methods offer the possibility of synthesizing metastable and kinetic products that ca...
Classically, Zintl phases are defined as valence-precise line compounds and are thus expected to exh...
We report the synthesis and characterization of nanocrystalline LiZnP. The reaction proceeds through...
Soft chemistry methods offer the possibility of synthesizing metastable and kinetic products that ca...
β-Zn_4Sb_3 is a promising thermoelectric material due to the abundance of zinc and antimony and repo...
Complex multinary compounds (ternary, quaternary, and higher) offer countless opportunities for disc...
Thermoelectric materials can convert heat into electricity directly via the Seebeck effect, providin...
Zintl compounds make excellent thermoelectrics with many opportunities for chemically tuning their e...
Half-Heuslers with vacancies that are stabilised by a semiconducting electron count offer new opport...
Theoretical work of two decades ago adequately explained the transport behavior and effectively guid...
Thermoelectric power generation represents a promising approach to utilize waste heat. The most effe...
Zintl phases are an extremely broad class of compounds that are charge balanced semiconductors. The...
Polycrystalline L4Sb3 (L = La, Ce, Sm, and Yb) and Yb4−x Sm x Sb3, which crystallizes in the anti-Th...
In response to theoretical calculations on the thermoelectric performance of LiZnSb, we report the p...
Understanding and controlling the defect chemistry of bulk materials can vastly increase the opportu...
Soft chemistry methods offer the possibility of synthesizing metastable and kinetic products that ca...
Classically, Zintl phases are defined as valence-precise line compounds and are thus expected to exh...
We report the synthesis and characterization of nanocrystalline LiZnP. The reaction proceeds through...
Soft chemistry methods offer the possibility of synthesizing metastable and kinetic products that ca...
β-Zn_4Sb_3 is a promising thermoelectric material due to the abundance of zinc and antimony and repo...
Complex multinary compounds (ternary, quaternary, and higher) offer countless opportunities for disc...
Thermoelectric materials can convert heat into electricity directly via the Seebeck effect, providin...
Zintl compounds make excellent thermoelectrics with many opportunities for chemically tuning their e...
Half-Heuslers with vacancies that are stabilised by a semiconducting electron count offer new opport...
Theoretical work of two decades ago adequately explained the transport behavior and effectively guid...
Thermoelectric power generation represents a promising approach to utilize waste heat. The most effe...
Zintl phases are an extremely broad class of compounds that are charge balanced semiconductors. The...
Polycrystalline L4Sb3 (L = La, Ce, Sm, and Yb) and Yb4−x Sm x Sb3, which crystallizes in the anti-Th...