Complex multinary compounds (ternary, quaternary, and higher) offer countless opportunities for discovering new semiconductors for applications such as photovoltaics and thermoelectrics. However, controlling doping has been a major challenge in complex semiconductors as there are many possibilities for charged intrinsic defects (e.g., vacancies, interstitials, antisite defects) whose energy depends on competing impurity phases. Even in compounds with no apparent deviation from a stoichiometric nominal composition, such defects commonly lead to free carrier concentrations in excess of 10^(20) cm^(−3). Nevertheless, by slightly altering the nominal composition, these defect concentrations can be tuned with small variation of the chemical pote...
Zintl phases are ideal candidates for efficient thermoelectric materials, because they are typically...
Zintl phases exhibit inherently low thermal conductivity and adjustable electronic properties, which...
Zn4Sb3 undergoes a phase transition from α to β phase at T1≈250 K. The high temperature β-Zn4Sb3 pha...
Complex multinary compounds (ternary, quaternary, and higher) offer countless opportunities for disc...
Understanding and controlling the defect chemistry of bulk materials can vastly increase the opportu...
The Zintl compound Ca_5Al_2Sb_6 is a promising thermoelectric material with exceptionally low lattic...
The complex Zintl phase Ca<sub>9</sub>Zn<sub>4.5</sub>Sb<sub>9</sub> is a promising thermoelectric ...
Yb_9Mn_(4.2)Sb_9 has been shown to have extremely low thermal conductivity and a high thermoelectric...
Classically, Zintl phases are defined as valence-precise line compounds and are thus expected to exh...
β-Zn_4Sb_3 is a promising thermoelectric material due to the abundance of zinc and antimony and repo...
The polymorphic intermetallic compound Zn_5Sb_4In_(2−δ) (δ = 0.15(3)) shows promising thermoelectric...
Zintl compounds with the chemical formula Ca_(5)M_(2)Sb_6 have attracted attention as candidates for...
Zn4Sb3 undergoes a phase transition from alpha to beta phase at T1[approximate]250 K. The high tempe...
Ca_5Al_2Sb_6 is an inexpensive, Earth-abundant compound that exhibits promising thermoelectric effic...
Zintl phases are an extremely broad class of compounds that are charge balanced semiconductors. The...
Zintl phases are ideal candidates for efficient thermoelectric materials, because they are typically...
Zintl phases exhibit inherently low thermal conductivity and adjustable electronic properties, which...
Zn4Sb3 undergoes a phase transition from α to β phase at T1≈250 K. The high temperature β-Zn4Sb3 pha...
Complex multinary compounds (ternary, quaternary, and higher) offer countless opportunities for disc...
Understanding and controlling the defect chemistry of bulk materials can vastly increase the opportu...
The Zintl compound Ca_5Al_2Sb_6 is a promising thermoelectric material with exceptionally low lattic...
The complex Zintl phase Ca<sub>9</sub>Zn<sub>4.5</sub>Sb<sub>9</sub> is a promising thermoelectric ...
Yb_9Mn_(4.2)Sb_9 has been shown to have extremely low thermal conductivity and a high thermoelectric...
Classically, Zintl phases are defined as valence-precise line compounds and are thus expected to exh...
β-Zn_4Sb_3 is a promising thermoelectric material due to the abundance of zinc and antimony and repo...
The polymorphic intermetallic compound Zn_5Sb_4In_(2−δ) (δ = 0.15(3)) shows promising thermoelectric...
Zintl compounds with the chemical formula Ca_(5)M_(2)Sb_6 have attracted attention as candidates for...
Zn4Sb3 undergoes a phase transition from alpha to beta phase at T1[approximate]250 K. The high tempe...
Ca_5Al_2Sb_6 is an inexpensive, Earth-abundant compound that exhibits promising thermoelectric effic...
Zintl phases are an extremely broad class of compounds that are charge balanced semiconductors. The...
Zintl phases are ideal candidates for efficient thermoelectric materials, because they are typically...
Zintl phases exhibit inherently low thermal conductivity and adjustable electronic properties, which...
Zn4Sb3 undergoes a phase transition from α to β phase at T1≈250 K. The high temperature β-Zn4Sb3 pha...