Multicaloric MnNiSi alloys
A multicaloric alloy material combines two isostructural compounds, the first compound being MnNiSi and the second compound being either MnFeGe or CoFeGe, each such compound having extremely different magnetic and thermo-structural properties. The resulting alloy material (MnNiSi) 1-x (MnFeGe) x or (MnNiSi) 1-x (CoFeGe) x possesses extraordinary magnetocaloric and/or barocaloric properties with an acute sensitivity to applied pressure and no appreciable magnetic hysteresis losses.
1. An alloy consisting of:
a first compound, said first compound comprising Mn 1±α Ni 1±β Si 1±γ , wherein α≤0.25, γ≤0.25, and γ≤0.25;
a second compound, said second compound isostructurally substituting the first compound, and said second compound comprising one of Fe 1±λ Mn 1±μ Ge 1±ν wherein λ≤0.25, μ≤0.25, and ν≤0.25 and Co 1±λ Fe 1±μ Ge 1±ν wherein λ≤0.25, μ≤0.25, and ν≤0.25;
where the ratio of the first compound to the second compound is 1-x to x; and
where when the second compound comprises Co 1±λ Fe 1±μ Ge 1±ν then x is from 0.30 to 0.50, and when the second compound is Fe 1±λ Mn 1±μ Ge 1±ν then x is from 0.40 to 0.65.
2. An alloy consisting of:
a first compound, said first compound comprising Mn 1±α Ni 1±β Si 1±γ , wherein α≤0.25, β≤0.25, and γ≤0.25;
a second compound, said second compound isostructurally substituting the first compound, and said second compound comprising one of Fe 1±λ Mn 1±μ Ge 1±ν wherein λ≤0.25, μ≤0.25, and ν≤0.25 and Co 1±λ Fe 1±μ Ge 1±ν wherein λ≤0.25, μ≤0.25, and ν≤0.25;
where the ratio of the first compound to the second compound is 1-x to x; and
where when the second compound comprises Co 1±λ Fe 1±μ Ge 1±ν then x is from 0.30 to 0.50, and when the second compound is Fe 1±λ Mn 1±μ Ge 1±ν then x is from 0.40 to 0.65 and further comprising an element from the group consisting of B, C, N, P, S, As and H, the element from the group consisting of B, C, N, P, S, As and H comprising not more than 15% by mass of the alloy.
3. An alloy consisting of
a first compound, said first compound comprising Mn 1±α Ni 1±β Si 1±γ , wherein α≤0.25, β≤0.25, and γ≤0.25; and
a second compound, said second compound isostructurally substituting the first compound, and said second compound comprising Fe 1±λ Mn 1±μ Ge 1±ν , wherein λ≤0.25, μ≤0.25, and ν≤0.25.
4. An alloy consisting of
a first compound, said first compound comprising Mn 1±α Ni 1±β Si 1±γ , wherein α≤0.25, β≤0.25, and γ≤0.25; and
a second compound, said second compound isostructurally substituting the first compound, and said second compound comprising Fe 1±λ Mn 1±μ Ge 1±ν , wherein λ≤0.25, μ≤0.25, and ν≤0.25 and further comprising an element from the group consisting of B, C, N, P, S, As and H, the element from the group consisting of B, C, N, P, S, As and H comprising not more than 15% by mass of the alloy.
5. An alloy consisting of
a first compound, said first compound comprising Mn 1±α Ni 1±β Si 1±γ , wherein α≤0.25, β≤0.25, and γ≤0.25; and
a second compound, said second compound isostructurally substituting the first compound, and said second compound comprising Co 1±λ Fe 1±μ Ge 1±ν wherein λ≤0.25, μ≤0.25, and ν≤0.25.
6. An alloy consisting of
a first compound, said first compound comprising Mn 1±α Ni 1±β Si 1±γ , wherein α≤0.25, β≤0.25, and γ≤0.25; and
a second compound, said second compound isostructurally substituting the first compound, and said second compound comprising Co 1±α Fe 1±μ Ge 1±ν wherein λ≤0.25, μ≤0.25, and ν≤0.25 and further comprising an element from the group consisting of B, C, N, P, S, As and H, the element from the group consisting of B, C, N, P, S, As and H comprising not more than 15% by mass of the alloy.