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  1. Recent progress of Na-flux method for GaN crystal growth
    2019/05/22 by Yusuke Mori, Masayuki Imanishi, Kosuke Murakami +1 · 6 citations
    Chemistry · Materials Science · Physics and Astronomy · #Chemistry #Computer science #Crystal (programming language) #Crystal growth #Crystallography #Engineering physics #Flux (metallurgy) #Flux method #Ga2O3 and related materials #GaN-based semiconductor devices and materials #Materials science #Metallurgy #Nanotechnology #Nucleation #Physics #Single crystal #Thermodynamics #ZnO doping and properties
  2. Crystal Facet Engineering of Photoelectrodes for Photoelectrochemical Water Splitting
    2019/03/15 by Songcan Wang, Gang Liu, Lianzhou Wang · 27 citations
    Chemistry · Energy · Engineering · Materials Science · #Advanced Photocatalysis Techniques #Catalysis #Chemistry #Computer science #Copper-based nanomaterials and applications #Crystal (programming language) #Electrical engineering #Engineering #Engineering physics #Facet (psychology) #Iron oxide chemistry and applications #Materials science #Nanotechnology #Optoelectronics #Photocatalysis #Photovoltaic system #Physics #Semiconductor #Water splitting
  3. Strongly correlated oxides for energy harvesting
    2018/11/26 by Jobu Matsuno, J. Fujioka, Tetsuji Okuda +3 · 1 citation
    Materials Science · Physics and Astronomy · #Advanced Thermoelectric Materials and Devices #Electronic and Structural Properties of Oxides #Quantum and electron transport phenomena #Thermoelectric effect #Thermoelectric materials #Energy harvesting #Spin–orbit interaction #Materials science #Electron #Nanotechnology #Coupling (piping) #Engineering physics #Current (fluid) #Energy (signal processing) #Condensed matter physics #Chemical physics #Physics #Thermodynamics #Quantum mechanics #Composite material
  4. Thermoelectric materials and applications for energy harvesting power generation
    2018/11/14 by Ioannis Petsagkourakis, Klas Tybrandt, Xavier Crispin +3 · 2 citations
    Materials Science · Engineering · #Advanced Thermoelectric Materials and Devices #Thermal Radiation and Cooling Technologies #Innovative Energy Harvesting Technologies #Energy harvesting #Materials science #Engineering physics #Thermoelectric materials #Thermoelectric effect #Electricity generation #Thermoelectric generator #Seebeck coefficient #Power (physics) #Nanotechnology #Physics #Thermodynamics
  5. Piezoresistive Pressure Sensors for Applications in Harsh Environments—A Roadmap
    2018/08/24 by Ha-Duong Ngo, Oswin Ehrmann, O. Ehrmann +4 · 1 citation
    Engineering · Physics and Astronomy · #Advanced MEMS and NEMS Technologies #Aerospace #Aerospace engineering #Automotive industry #Composite material #Electrical engineering #Electronics #Engineering #Engineering physics #Materials science #Mechanical and Optical Resonators #Mechanical engineering #Microelectromechanical systems #Nanotechnology #Nanowire Synthesis and Applications #Optoelectronics #Piezoresistive effect #Semiconductor #Silicon #Silicon carbide #Silicon on insulator
  6. Nanoscale self-assembly of thermoelectric materials: a review of chemistry-based approaches
    2018/07/27 by Sajad Yazdani, Michael T. Pettes · 1 citation
    Materials Science · #Advanced Thermoelectric Materials and Devices #Thermal Expansion and Ionic Conductivity #Thermal properties of materials #Thermoelectric materials #Materials science #Thermoelectric effect #Nanotechnology #Thermal conductivity #Seebeck coefficient #Nanowire #Engineering physics #Nanoscopic scale #Energy transformation #Electrical resistivity and conductivity #Composite material #Electrical engineering #Thermodynamics
  7. Resolving the Compositional and Structural Defects of Degraded LiNixCoyMnzO2 Particles to Directly Regenerate High-Performance Lithium-Ion Battery Cathodes
    2018/06/26 by Yang Shi, Gen Chen, Fang Liu +2 · 1 citation
    Engineering · Chemistry · #Advancements in Battery Materials #Extraction and Separation Processes #Advanced Battery Technologies Research #Cathode #Materials science #Degradation (telecommunications) #Stoichiometry #Phase (matter) #Lithium (medication) #Chemical engineering #High energy #Nanotechnology #Process engineering #Engineering physics #Computer science #Chemistry #Physical chemistry
  8. Highlights from BNL and RHIC 2017
    2018/05/07 by M. J. Tannenbaum, Tannenbaum, M. J. · 1 citation
    Physics and Astronomy · #Engineering physics #FOS: Physical sciences #Gluon #Heavy ion #High Energy Physics - Experiment (hep-ex) #High-Energy Particle Collisions Research #Ion #Jet quenching #National laboratory #Nuclear Experiment (nucl-ex) #Nuclear physics #Particle physics #Particle physics theoretical and experimental studies #Physics #Plasma #Quantum Chromodynamics and Particle Interactions #Quark #Quark–gluon plasma #Relativistic Heavy Ion Collider #hep-ex #nucl-ex
  9. Advances in thermoelectrics
    2018/04/03 by Jun Mao, Zihang Liu, Jiawei Zhou +4 · 30 citations
    Materials Science · #Advanced Thermoelectric Materials and Devices #Engineering physics #Heusler alloys: electronic and magnetic properties #Materials science #Physics #Thermal properties of materials #Thermodynamics #Thermoelectric effect #Thermoelectric materials
  10. Review of zinc-based hybrid flow batteries: From fundamentals to applications
    2018/03/18 by A. Khor, Puiki Leung, P. Leung +11 · 1 citation
    Chemistry · Energy · Engineering · Materials Science · #Advanced battery technologies research #Battery (electricity) #Chemistry #Computer science #Electrocatalysts for Energy Conversion #Electrode #Electrolyte #Energy density #Energy storage #Engineering #Engineering physics #Flow (mathematics) #Flow battery #Materials science #Metallurgy #Nanotechnology #Process engineering #Supercapacitor Materials and Fabrication #Zinc
  11. Wearable and flexible thermoelectrics for energy harvesting
    2018/03/01 by Ruoming Tian, Chunlei Wan, Naoyuki Hayashi +2 · 2 citations
    Engineering · Materials Science · #Advanced Thermoelectric Materials and Devices #Computer science #Embedded system #Energy (signal processing) #Energy harvesting #Engineering #Engineering physics #Innovative Energy Harvesting Technologies #Materials science #Nanotechnology #Physics #Thermal Radiation and Cooling Technologies #Thermoelectric effect #Thermoelectric materials #Wearable computer #Wearable technology
  12. Energy Density of Cylindrical Li-Ion Cells: A Comparison of Commercial 18650 to the 21700 Cells
    2018/01/01 by Jason B. Quinn, Thomas Waldmann, Karsten Richter +2 · 1 citation
    Chemistry · Engineering · #Advanced Battery Materials and Technologies #Advanced Battery Technologies Research #Advancements in Battery Materials #Biomedical engineering #Chemistry #Composite material #Electrode #Energy density #Engineering physics #Ion #Materials science #Specific energy
  13. Optimization and Performance of Bifacial Solar Modules: A Global Perspective
    2017/09/30 by Xingshu Sun, Mohammad Ryyan Khan, Chris Deline +2 · 1 citation
    Energy · Engineering · Physics and Astronomy · #Architectural engineering #Artificial intelligence #Computer science #Engineering #Engineering physics #Environmental science #Perspective (graphical) #Photovoltaic System Optimization Techniques #Solar Thermal and Photovoltaic Systems #physics.app-ph #physics.optics #solar cell performance optimization
  14. Advances in thermoelectric materials research: Looking back and moving forward
    2017/09/29 by Jian He, Terry M. Tritt · 3 citations
    Materials Science · Engineering · #Advanced Thermoelectric Materials and Devices #Thermal properties of materials #Perovskite Materials and Applications #Thermoelectric materials #Thermoelectric effect #Engineering physics #Renewable energy #Nanotechnology #Materials science #Computer science #Physics #Engineering #Electrical engineering
  15. Raising the one-sun conversion efficiency of III–V/Si solar cells to 32.8% for two junctions and 35.9% for three junctions
    2017/08/25 by Stephanie Essig, Christophe Allebé, Timothy Remo +15 · 1 citation
    Engineering · Materials Science · #Chalcogenide Semiconductor Thin Films #Electrical engineering #Energy conversion efficiency #Engineering #Engineering physics #Materials science #Optoelectronics #Photovoltaic system #Physics #Quantum Dots Synthesis And Properties #Solar cell #Solar cell efficiency #Tandem #Triple junction #solar cell performance optimization
  16. GaN-on-Si Power Technology: Devices and Applications
    2017/02/27 by Kevin J. Chen, Oliver Haberlen, Oliver D. Häberlen +6 · 33 citations
    Engineering · Physics and Astronomy · #Commercialization #Computer science #Electrical engineering #Electronic engineering #Electronics #Engineering #Engineering physics #GaN-based semiconductor devices and materials #Gallium nitride #MOSFET #Materials science #Nanotechnology #Physics #Power (physics) #Power MOSFET #Power electronics #Power module #Power semiconductor device #Reliability (semiconductor) #Semiconductor materials and devices #Silicon Carbide Semiconductor Technologies #Transistor #Voltage
  17. Superjunction Power Devices, History, Development, and Future Prospects
    2017/02/14 by Florin Udrea, Gerald Deboy, Tatsuhiko Fujihira · 14 citations
    Engineering · #Advanced DC-DC Converters #Bipolar junction transistor #Electrical engineering #Electromagnetic Compatibility and Noise Suppression #Electronic engineering #Engineering #Engineering physics #Insulated-gate bipolar transistor #MOSFET #Materials science #Physics #Power (physics) #Power electronics #Power semiconductor device #Silicon Carbide Semiconductor Technologies #Silicon carbide #Transistor #Voltage
  18. Review—SEI: Past, Present and Future
    2017/01/01 by E. Peled, S. Menkin, Svetlana Menkin · 44 citations
    Chemistry · Engineering · #Advanced Battery Materials and Technologies #Advanced Battery Technologies Research #Advancements in Battery Materials #Alkali metal #Anode #Battery (electricity) #Chemical engineering #Chemistry #Electrode #Electrolyte #Engineering #Engineering physics #Lithium (medication) #Lithium metal #Materials science #Physical chemistry #Physics #Power (physics) #Thermodynamics
  19. Figure of merit ZT of a thermoelectric device defined from materials properties
    2017/01/01 by G. Jeffrey Snyder, Alemayouh H. Snyder · 1 citation
    Materials Science · Physics and Astronomy · Engineering · #Advanced Thermoelectric Materials and Devices #Advanced Thermodynamics and Statistical Mechanics #Thermal Radiation and Cooling Technologies #Figure of merit #Thermoelectric effect #Materials science #Thermoelectric materials #Engineering physics #Optoelectronics #Composite material #Engineering #Physics #Thermodynamics
  20. Nano-micro-porous skutterudites with 100% enhancement in ZT for high performance thermoelectricity
    2016/11/12 by Atta Ullah Khan, Kazuaki Kobayashi, Dai‐Ming Tang +9 · 1 citation
    Materials Science · #Advanced Thermoelectric Materials and Devices #Thermal properties of materials #Thermal Expansion and Ionic Conductivity #Materials science #Thermoelectric effect #Thermoelectric materials #Thermal conductivity #Nano- #Phonon scattering #Porosity #Phonon #Figure of merit #Grain boundary #Alloy #Micrometer #Optoelectronics #Condensed matter physics #Nanotechnology #Engineering physics #Composite material #Microstructure #Optics #Thermodynamics
  21. Design and fabrication of silicon nanowires towards efficient solar cells
    2016/11/12 by Peng Yu, Jiang Wu, Shenting Liu +4 · 1 citation
    Engineering · Materials Science · Physics and Astronomy · #Crystalline silicon #Electrical engineering #Energy conversion efficiency #Engineering #Engineering physics #Fabrication #Hybrid solar cell #Materials science #Nanotechnology #Nanowire #Nanowire Synthesis and Applications #Optoelectronics #Photovoltaic system #Polymer solar cell #Quantum dot solar cell #Semiconductor #Semiconductor materials and interfaces #Silicon #Silicon Nanostructures and Photoluminescence #Silicon nanowires #Solar cell #Solar cell efficiency
  22. Cold sintering process: A new era for ceramic packaging and microwave device development
    2016/10/27 by Jing Guo, Amanda Baker, Amanda L. Baker +4 · 10 citations
    Engineering · Materials Science · #Advanced ceramic materials synthesis #Ceramic #Composite material #Computer science #Engineering #Engineering physics #Ferroelectric and Piezoelectric Materials #Materials science #Metallurgy #Microwave #Microwave Dielectric Ceramics Synthesis #Process (computing) #Process development #Process engineering #Sintering #Telecommunications
  23. Cold Sintering Process: A Novel Technique for Low‐Temperature Ceramic Processing of Ferroelectrics
    2016/10/13 by Hanzheng Guo, Amanda Baker, Jing Guo +1 · 17 citations
    Engineering · Materials Science · #Acoustic Wave Resonator Technologies #Ceramic #Composite material #Computer science #Engineering #Engineering physics #Ferroelectric and Piezoelectric Materials #Materials science #Microwave Dielectric Ceramics Synthesis #Nanotechnology #Physics #Process (computing) #Process engineering #Sintering
  24. A general computational method for electron emission and thermal effects in field emitting nanotips
    2016/09/30 by Andreas Kyritsakis, Flyura Djurabekova · 1 citation
    Engineering · Materials Science · Mathematics · Physics and Astronomy · #Advancements in Semiconductor Devices and Circuit Design #Atomic physics #Computational physics #Diamond and Carbon-based Materials Research #Electron #Engineering #Engineering physics #Field (mathematics) #Field electron emission #Materials science #Mathematics #Nanotechnology #Nuclear engineering #Nuclear physics #Physics #Semiconductor materials and devices #Thermal #Thermal emission #Thermodynamics #cond-mat.mtrl-sci
  25. Low temperature plasma enhanced CVD epitaxial growth of silicon on GaAs: a new paradigm for III-V/Si integration
    2016/05/11 by Romain Cariou, Wanghua Chen, Jean‐Luc Maurice +6 · 1 citation
    Engineering · Physics and Astronomy · #Silicon and Solar Cell Technologies #Semiconductor materials and interfaces #Integrated Circuits and Semiconductor Failure Analysis #Epitaxy #Plasma #Silicon #Materials science #Optoelectronics #Engineering physics #Nanotechnology #Physics #Layer (electronics)
  26. Recent progress in half-Heusler thermoelectric materials
    2015/11/22 by Lihong Huang, Qinyong Zhang, Bo Yuan +3 · 2 citations
    Engineering · Materials Science · #Advanced Thermoelectric Materials and Devices #Chemical engineering #Composite material #Computer science #Condensed matter physics #Engineering #Engineering physics #Heusler alloys: electronic and magnetic properties #Materials science #Nanocomposite #Nanotechnology #Phonon #Phonon scattering #Physics #Ternary operation #Thermal conductivity #Thermal properties of materials #Thermal stability #Thermodynamics #Thermoelectric effect #Thermoelectric materials
  27. High thermoelectric performance of the distorted bismuth(110) layer
    2015/09/30 by L. Cheng, Longfei Cheng, H. J. Liu +14 · 1 citation
    Earth and Planetary Sciences · Materials Science · Physics and Astronomy · #Advanced Thermoelectric Materials and Devices #Bismuth #Engineering physics #Layer (electronics) #Materials science #Metallurgy #Nanotechnology #Physics #Thermal properties of materials #Thermodynamics #Thermoelectric effect #Thermoelectric materials #cond-mat.mes-hall #cond-mat.mtrl-sci #nanoparticles nucleation surface interactions
  28. Experimental review of hypernuclear physics: recent achievements and future perspectives
    2015/08/28 by A. Feliciello, T. Nagae · 4 citations
    Physics and Astronomy · Engineering · #Particle physics theoretical and experimental studies #Quantum Chromodynamics and Particle Interactions #Particle Accelerators and Free-Electron Lasers #Physics #Nuclear physics #Nuclear engineering #Systems engineering #Engineering physics #Aerospace engineering #Engineering
  29. Relationship between thermoelectric figure of merit and energy conversion efficiency
    2015/06/22 by Hee Seok Kim, Weishu Liu, Gang Chen +2 · 3 citations
    Materials Science · Engineering · #Advanced Thermoelectric Materials and Devices #Thermal Radiation and Cooling Technologies #Thermal properties of materials #Figure of merit #Seebeck coefficient #Dimensionless quantity #Thermoelectric effect #Thermal conductivity #Energy conversion efficiency #Materials science #Thermoelectric materials #Electrical resistivity and conductivity #Electricity #Engineering physics #Condensed matter physics #Thermodynamics #Physics #Electrical engineering #Optoelectronics #Composite material #Engineering
  30. Amorphous-crystalline transition in thermoelectric NbO2
    2015/06/05 by Denis Mušić, Yen‐Ting Chen, Pascal Bliem +1 · 2 citations
    Materials Science · Chemistry · #Advanced Thermoelectric Materials and Devices #Transition Metal Oxide Nanomaterials #Thermal Expansion and Ionic Conductivity #Amorphous solid #Materials science #Thermoelectric effect #Natural bond orbital #Condensed matter physics #Transition (genetics) #Thermoelectric materials #Engineering physics #Crystallography #Thermodynamics #Chemistry #Physics #Computational chemistry

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