ZT > 0.1 Electron-Carrying Polymer Thermoelectric Composites with In Situ SnCl 2 Microstructure Growth (Open Access) (English)
- New search for: R. M. Ireland
- New search for: Y. Liu
- New search for: X. Guo
- New search for: Y. Cheng
- New search for: S. Kola
- New search for: W. Wang
- New search for: T. Jones
- New search for: R. Yang
- New search for: M. L. Falk
- New search for: H. E. Katz
- New search for: R. M. Ireland
- New search for: Y. Liu
- New search for: X. Guo
- New search for: Y. Cheng
- New search for: S. Kola
- New search for: W. Wang
- New search for: T. Jones
- New search for: R. Yang
- New search for: M. L. Falk
- New search for: H. E. Katz
2015
- Report / No indication
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Title:ZT > 0.1 Electron-Carrying Polymer Thermoelectric Composites with In Situ SnCl 2 Microstructure Growth (Open Access)
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Contributors:R. M. Ireland ( author ) / Y. Liu ( author ) / X. Guo ( author ) / Y. Cheng ( author ) / S. Kola ( author ) / W. Wang ( author ) / T. Jones ( author ) / R. Yang ( author ) / M. L. Falk ( author ) / H. E. Katz ( author )
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Publisher:
- New search for: Johns Hopkins Univ., Baltimore, MD.
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Publication date:2015
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Size:6 pages
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Type of media:Report
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Type of material:No indication
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Language:English
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Contract Number:AD1042139/XAB
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Keywords:Polymer Chemistry , Electrotechnology , Solid State Physics , Conductive polymers , Thermal conductivity , Composite materials , Electron microscopes , Drop casting , Heat transfer , Energy bands , Crystal structure , Aspect ratio , Measurement , Microstructure , Thermoelectricity , Seebeck effect , Tin compounds , Chlorides , Seebeck coefficient , conducting polymers , Tin chlorides
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Source: