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      Phonon-glass electron-crystal thermoelectric clathrates: Experiments and theory

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          Complex thermoelectric materials.

          Thermoelectric materials, which can generate electricity from waste heat or be used as solid-state Peltier coolers, could play an important role in a global sustainable energy solution. Such a development is contingent on identifying materials with higher thermoelectric efficiency than available at present, which is a challenge owing to the conflicting combination of material traits that are required. Nevertheless, because of modern synthesis and characterization techniques, particularly for nanoscale materials, a new era of complex thermoelectric materials is approaching. We review recent advances in the field, highlighting the strategies used to improve the thermopower and reduce the thermal conductivity.
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            Alternative energy technologies.

            Fossil fuels currently supply most of the world's energy needs, and however unacceptable their long-term consequences, the supplies are likely to remain adequate for the next few generations. Scientists and policy makers must make use of this period of grace to assess alternative sources of energy and determine what is scientifically possible, environmentally acceptable and technologically promising.
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              Anomalous low-temperature thermal properties of glasses and spin glasses

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                Author and article information

                Journal
                RMPHAT
                Reviews of Modern Physics
                Rev. Mod. Phys.
                American Physical Society (APS)
                0034-6861
                1539-0756
                June 2014
                June 4 2014
                : 86
                : 2
                : 669-716
                Article
                10.1103/RevModPhys.86.669
                5f4b34de-7aa1-4861-aabb-074b2f45ad18
                © 2014

                http://link.aps.org/licenses/aps-default-license

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