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Restek Corporation 1 4 bis
1 4 Bis, supplied by Restek Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Restek Corporation 1 4 bis
1 4 Bis, supplied by Restek Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Cole-Parmer bi 1 4 sb
a , Framework for a typical n–p paired TE generator design. b , c , 3D plots of η max ( b ) and P max ( c ) as functions of A p / A n and H /( A p + A n ) for the Mg 3 Bi 1.4 Sb 0.6 –MgAgSb n–p paired TE generator predicted by TEGNet. d , e , Corresponding 2D contour plots of η max ( d ) and P max ( e ). f , Scatter plot of normalized P max and η max from TEGNet versus COMSOL. g , Optical image of the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and its measurement set-up. h , i , I -dependent V 0 and P ( h ) and Q 0 and η ( i ) for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator under different T h . j , T -dependent η max for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and comparison with other TE generators based on different TE material systems  ,  ,  ,  . k , 3D and 2D contour plots of η max as functions of A p / A n and H /( A p + A n ) for the Mg 3 Sb 1.5 Bi 0.5 –SnS n–p paired TE generator predicted by TEGNet. l , 2D contour plots of η max of n-type segmented Mg 3 Sb 1.5 Bi 0.5 /Mg 3 Bi 1.4 Sb 0.6 –p-type GeTe paired TE generator as functions of leg length ratio and geometry predicted by TEGNet.
Bi 1 4 Sb, supplied by Cole-Parmer, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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J&K Scientific bpaf 1 3 trifluoro 2 2 bis 4 hydroxyphenyl propane
a , Framework for a typical n–p paired TE generator design. b , c , 3D plots of η max ( b ) and P max ( c ) as functions of A p / A n and H /( A p + A n ) for the Mg 3 Bi 1.4 Sb 0.6 –MgAgSb n–p paired TE generator predicted by TEGNet. d , e , Corresponding 2D contour plots of η max ( d ) and P max ( e ). f , Scatter plot of normalized P max and η max from TEGNet versus COMSOL. g , Optical image of the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and its measurement set-up. h , i , I -dependent V 0 and P ( h ) and Q 0 and η ( i ) for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator under different T h . j , T -dependent η max for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and comparison with other TE generators based on different TE material systems  ,  ,  ,  . k , 3D and 2D contour plots of η max as functions of A p / A n and H /( A p + A n ) for the Mg 3 Sb 1.5 Bi 0.5 –SnS n–p paired TE generator predicted by TEGNet. l , 2D contour plots of η max of n-type segmented Mg 3 Sb 1.5 Bi 0.5 /Mg 3 Bi 1.4 Sb 0.6 –p-type GeTe paired TE generator as functions of leg length ratio and geometry predicted by TEGNet.
Bpaf 1 3 Trifluoro 2 2 Bis 4 Hydroxyphenyl Propane, supplied by J&K Scientific, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Alfa Chemistry dihydro 9 10 dioxo 1 4 anthrylene diimino bis n cyclohexyl 2 4 6 trimethylbenzenesulphonamide
a , Framework for a typical n–p paired TE generator design. b , c , 3D plots of η max ( b ) and P max ( c ) as functions of A p / A n and H /( A p + A n ) for the Mg 3 Bi 1.4 Sb 0.6 –MgAgSb n–p paired TE generator predicted by TEGNet. d , e , Corresponding 2D contour plots of η max ( d ) and P max ( e ). f , Scatter plot of normalized P max and η max from TEGNet versus COMSOL. g , Optical image of the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and its measurement set-up. h , i , I -dependent V 0 and P ( h ) and Q 0 and η ( i ) for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator under different T h . j , T -dependent η max for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and comparison with other TE generators based on different TE material systems  ,  ,  ,  . k , 3D and 2D contour plots of η max as functions of A p / A n and H /( A p + A n ) for the Mg 3 Sb 1.5 Bi 0.5 –SnS n–p paired TE generator predicted by TEGNet. l , 2D contour plots of η max of n-type segmented Mg 3 Sb 1.5 Bi 0.5 /Mg 3 Bi 1.4 Sb 0.6 –p-type GeTe paired TE generator as functions of leg length ratio and geometry predicted by TEGNet.
Dihydro 9 10 Dioxo 1 4 Anthrylene Diimino Bis N Cyclohexyl 2 4 6 Trimethylbenzenesulphonamide, supplied by Alfa Chemistry, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Macklin Inc 1 4 bis
a , Framework for a typical n–p paired TE generator design. b , c , 3D plots of η max ( b ) and P max ( c ) as functions of A p / A n and H /( A p + A n ) for the Mg 3 Bi 1.4 Sb 0.6 –MgAgSb n–p paired TE generator predicted by TEGNet. d , e , Corresponding 2D contour plots of η max ( d ) and P max ( e ). f , Scatter plot of normalized P max and η max from TEGNet versus COMSOL. g , Optical image of the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and its measurement set-up. h , i , I -dependent V 0 and P ( h ) and Q 0 and η ( i ) for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator under different T h . j , T -dependent η max for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and comparison with other TE generators based on different TE material systems  ,  ,  ,  . k , 3D and 2D contour plots of η max as functions of A p / A n and H /( A p + A n ) for the Mg 3 Sb 1.5 Bi 0.5 –SnS n–p paired TE generator predicted by TEGNet. l , 2D contour plots of η max of n-type segmented Mg 3 Sb 1.5 Bi 0.5 /Mg 3 Bi 1.4 Sb 0.6 –p-type GeTe paired TE generator as functions of leg length ratio and geometry predicted by TEGNet.
1 4 Bis, supplied by Macklin Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/1 4 bis/product/Macklin Inc
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Strem Chemicals chloro 1 5 cyclooctadiene 4 5 dimethyl 1 3 bis 2 4 6 trimethylphenyl imidazole 2 ylidene iridium i
a , Framework for a typical n–p paired TE generator design. b , c , 3D plots of η max ( b ) and P max ( c ) as functions of A p / A n and H /( A p + A n ) for the Mg 3 Bi 1.4 Sb 0.6 –MgAgSb n–p paired TE generator predicted by TEGNet. d , e , Corresponding 2D contour plots of η max ( d ) and P max ( e ). f , Scatter plot of normalized P max and η max from TEGNet versus COMSOL. g , Optical image of the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and its measurement set-up. h , i , I -dependent V 0 and P ( h ) and Q 0 and η ( i ) for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator under different T h . j , T -dependent η max for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and comparison with other TE generators based on different TE material systems  ,  ,  ,  . k , 3D and 2D contour plots of η max as functions of A p / A n and H /( A p + A n ) for the Mg 3 Sb 1.5 Bi 0.5 –SnS n–p paired TE generator predicted by TEGNet. l , 2D contour plots of η max of n-type segmented Mg 3 Sb 1.5 Bi 0.5 /Mg 3 Bi 1.4 Sb 0.6 –p-type GeTe paired TE generator as functions of leg length ratio and geometry predicted by TEGNet.
Chloro 1 5 Cyclooctadiene 4 5 Dimethyl 1 3 Bis 2 4 6 Trimethylphenyl Imidazole 2 Ylidene Iridium I, supplied by Strem Chemicals, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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a , Framework for a typical n–p paired TE generator design. b , c , 3D plots of η max ( b ) and P max ( c ) as functions of A p / A n and H /( A p + A n ) for the Mg 3 Bi 1.4 Sb 0.6 –MgAgSb n–p paired TE generator predicted by TEGNet. d , e , Corresponding 2D contour plots of η max ( d ) and P max ( e ). f , Scatter plot of normalized P max and η max from TEGNet versus COMSOL. g , Optical image of the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and its measurement set-up. h , i , I -dependent V 0 and P ( h ) and Q 0 and η ( i ) for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator under different T h . j , T -dependent η max for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and comparison with other TE generators based on different TE material systems  ,  ,  ,  . k , 3D and 2D contour plots of η max as functions of A p / A n and H /( A p + A n ) for the Mg 3 Sb 1.5 Bi 0.5 –SnS n–p paired TE generator predicted by TEGNet. l , 2D contour plots of η max of n-type segmented Mg 3 Sb 1.5 Bi 0.5 /Mg 3 Bi 1.4 Sb 0.6 –p-type GeTe paired TE generator as functions of leg length ratio and geometry predicted by TEGNet.

Journal: Nature

Article Title: Composable neural emulators accelerate thermoelectric generator design

doi: 10.1038/s41586-026-10223-1

Figure Lengend Snippet: a , Framework for a typical n–p paired TE generator design. b , c , 3D plots of η max ( b ) and P max ( c ) as functions of A p / A n and H /( A p + A n ) for the Mg 3 Bi 1.4 Sb 0.6 –MgAgSb n–p paired TE generator predicted by TEGNet. d , e , Corresponding 2D contour plots of η max ( d ) and P max ( e ). f , Scatter plot of normalized P max and η max from TEGNet versus COMSOL. g , Optical image of the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and its measurement set-up. h , i , I -dependent V 0 and P ( h ) and Q 0 and η ( i ) for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator under different T h . j , T -dependent η max for the fabricated Mg 3 Bi 1.4 Sb 0.6 –MgAgSb two n–p paired TE generator and comparison with other TE generators based on different TE material systems , , , . k , 3D and 2D contour plots of η max as functions of A p / A n and H /( A p + A n ) for the Mg 3 Sb 1.5 Bi 0.5 –SnS n–p paired TE generator predicted by TEGNet. l , 2D contour plots of η max of n-type segmented Mg 3 Sb 1.5 Bi 0.5 /Mg 3 Bi 1.4 Sb 0.6 –p-type GeTe paired TE generator as functions of leg length ratio and geometry predicted by TEGNet.

Article Snippet: MgAgSb and Mg 3 Bi 1.4 Sb 0.6 were prepared by ball milling (SPEX 8000D) in an Ar atmosphere for 5 h, whereas Bi 0.4 Sb 1.6 Te 3 was prepared by melting at 1,273 K in a quartz tube for 12 h, followed by ball milling of the resulting ingot for 1 h. The raw materials used are high-purity Mg turnings (99.95%), Ag powders (99.99%), Sb shots (99.999%), Bi shots (99.999%), Te shots (99.999%) and In powders (99.99%).

Techniques: Comparison