98%
921
2 minutes
20
In this study, a combination of theoretical calculations and experiments were carried out to analyze boron phosphide materials. Amorphous boron powder and amorphous red phosphorus were used as raw materials to directly synthesize the target samples in one step under high-pressure and high-temperature (HPHT) conditions. Theoretical calculations were then carried out based on the XRD spectra of boron phosphide at 4 GPa and 1200 °C. The experimental results show that the target samples can be successfully prepared at HPHT. The electrical properties of the samples were characterized, and it was found that their conductivity increased with the increase in temperature, and they have a semiconducting nature, which is consistent with the theoretical calculations. Its Seebeck coefficient is positive at different temperatures, indicating that the synthesized boron phosphide is a P-type semiconductor. The combination of theoretical calculations and experiments shows that high pressure can reduce the lattice constant of boron phosphide, thus reducing its forbidden bandwidth, which improves its electrical properties. EDS shows a homogeneous distribution of the elements in the samples. Successful synthesis of BP crystals will probably stimulate more research into its semiconductor properties. It may also provide some assistance in the application of BP in aero-engine high-temperature monitoring systems as well as thermally controlled coatings for deep-space probes.
Download full-text PDF |
Source |
---|---|
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11944341 | PMC |
http://dx.doi.org/10.3390/nano15060446 | DOI Listing |
J Environ Manage
September 2025
Department of Chemistry, School of Basic and Applied Sciences, Maharaja Agrasen University, Solan, 174103, HP, India. Electronic address:
In this study, we introduce a novel ternary heterojunction composite, (BiO)Co/CoP/BN, supported on magnetic biochar, synthesized via an in-situ hydrothermal method. Water pollution by pharmaceutical contaminants, particularly antibiotics like tetracycline (TCN), poses a serious threat to environmental and public health. Conventional treatment methods often fall short in completely removing such persistent pollutants.
View Article and Find Full Text PDFACS Omega
July 2025
Yunnan Xinyao Semiconductor Materials Co., Ltd., Kunming 650503, China.
High-quality Indium phosphide (InP) single crystals are mainly grown using Vertical Gradient Freeze (VGF) or Vertical Bridgman (VB) methods. However, producing large-diameter (>4-in.) single crystals with uniform and controlled doping concentrations poses significant challenges.
View Article and Find Full Text PDFAcc Mater Res
May 2025
School of Engineering and Applied Science, University of California, Los Angeles (UCLA), Los Angeles, California 90095, United States.
Power semiconductors and chips are essential in modern electronics, driving applications from personal devices and data centers to energy technologies, vehicles, and Internet infrastructure. However, efficient heat dissipation remains a critical challenge, directly affecting their performance, reliability, and lifespan. High-power electronics based on wide- and ultrawide-bandgap semiconductors can exhibit power densities exceeding 10 kW/cm, hundreds of times higher than digital electronics, posing significant thermal management challenges.
View Article and Find Full Text PDFNanomaterials (Basel)
April 2025
State Key Laboratory of Mechanics and Control for Aerospace Structures, Laboratory of Intelligent Nano Materials and Devices of Ministry of Education, College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China.
Boron phosphide (BP), an emerging III-V semiconductor, has garnered significant interest because of its exceptional structural stability, wide bandgap, high thermal conductivity, and tunable electronic properties. This review provides a comprehensive analysis of BP, commencing with its distinctive structural characteristics and proceeding with a detailed examination of its exceptional physicochemical properties. Recent progress in BP synthesis is critically examined, with a focus on key fabrication strategies such as chemical vapor deposition, high-pressure co-crystal melting, and molten salt methods.
View Article and Find Full Text PDFNanomaterials (Basel)
March 2025
State Key Laboratory of High Pressure and Superhard Materials, College of Physics, Jilin University, Changchun 130012, China.
In this study, a combination of theoretical calculations and experiments were carried out to analyze boron phosphide materials. Amorphous boron powder and amorphous red phosphorus were used as raw materials to directly synthesize the target samples in one step under high-pressure and high-temperature (HPHT) conditions. Theoretical calculations were then carried out based on the XRD spectra of boron phosphide at 4 GPa and 1200 °C.
View Article and Find Full Text PDF