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High-entropy materials for energy and electronic applications
High-entropy materials (HEMs) hold promise for a variety of applications because their properties can be readily tailored by selecting specific...
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Deep learning approach to genome of two-dimensional materials with flat electronic bands
Electron-electron correlations play central role in condensed matter physics, governing phenomena from superconductivity to magnetism and numerous...
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MXene-based flexible electronic materials for wound infection detection and treatment
Wound infection is a worldwide health issue that not only brings large detrimental effects to people’s physical and mental health, but also causes...
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Exceptional electronic transport and quantum oscillations in thin bismuth crystals grown inside van der Waals materials
Confining materials to two-dimensional forms changes the behaviour of the electrons and enables the creation of new devices. However, most materials...
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Electronic Phase Separation in Magnetic Materials
AbstractA review of the basic concepts and mechanisms related to the electronic phase separation and the formation of nanoscale inhomogeneities in...
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Optimizing compounding ratios of polycarbonate and recycled polyethylene terephthalate for electronic device covers: a study on sustainable materials
Plastic pollution poses a serious risk globally and is having a major adverse impact on nearly every marine and freshwater ecosystem on the planet....
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Fe2HfZ (Z = Si, Ge, Sn), Promising New Candidate Materials for Electronic and Thermoelectric Applications
Full-Heusler materials have attracted intensive attention of scientific research in recent years due to their physical properties, the materials are... -
On Few Electronic Properties of Nanowires of Heavily Doped Biosensing Materials
In this chapter, we study the effective electron mass (EEM), the Einstein relation for the diffusivity–mobility ratio (ER), the Einstein’s... -
Recycling the spent electronic materials to construct a high-performance Cu1.94S/ZnS heterostructure anode of sodium-ion batteries
Heterostructure engineering by coupling different nanocrystals has received extensive attention because it can enhance the reaction kinetics of the...
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The influence mechanism of mg do** on the thermoelectric properties of ZnO electronic materials for cable channels
ZnO is one of the most promising oxide electronic thermoelectric materials in the medium and high-temperature range. The influence mechanism of Mg...
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Wurtzite and fluorite ferroelectric materials for electronic memory
Ferroelectric materials, the charge equivalent of magnets, have been the subject of continued research interest since their discovery more than...
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Dopant incorporation into TiO2 semiconductor materials for optical, electronic, and physical property enhancement: do** strategy and trend analysis
Do** of semiconductor materials can significantly alter the characteristics of the intrinsic semiconductors. The titanium dioxide (TiO 2 ) has been...
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High-resolution flexible electronic devices by electrohydrodynamic jet printing: From materials toward applications
High-resolution flexible electronic devices are widely used in the fields of soft robotics, smart human-machine interaction, and intelligent...
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Efficient first-principles electronic transport approach to complex band structure materials: the case of n-type Mg3Sb2
We present an efficient method for accurately computing electronic scattering rates and transport properties in materials with complex band...
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A critical review of the preparation strategies of thermally conductive and electrically insulating polymeric materials and their applications in heat dissipation of electronic devices
Nowadays, the local heat accumulation of electronic components not only restricts the further miniaturization and integration of electronic devices...
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A general one-step plug-and-probe approach to top-gated transistors for rapidly probing delicate electronic materials
The miniaturization of silicon-based electronics has motivated considerable efforts in exploring new electronic materials, including two-dimensional...
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Liquid Metal Electronic Devices
Combining metallic and liquid characteristics, liquid metals have shown ultimate flexibility, high electrical and thermal conductivity, and unique... -
Electronic-structure methods for materials design
The accuracy and efficiency of electronic-structure methods to understand, predict and design the properties of materials has driven a new paradigm...
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Electronic and Optical Properties of Perovskite Semiconductor
This chapter presents a comprehensive review of the literature on the electronic and optical properties of metal halide perovskite semiconductors,...