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Tsinghua University Press


Novel insights into Candida glabrata in pregnant women's reproductive tracts in Hainan: prevalence, drug resistance, and genetic diversity

Researchers found high prevalence of Candida glabrata in pregnant women's reproductive tracts in Hainan, with 36.2% of isolates resistant to at least one antifungal drug. Genetic diversity analysis revealed 14 sequence types, with some shared among ecological niches, indicating potential for transmission and evolution.

SourceTsinghua University Press·JournalMycology: An International Journal on Fungal Biology·DateMar 6, 2025

Excellent high-temperature strength of (HfZrTiTaNb)C high-entropy carbide diffusion-bonded joint via in-situ alloying of Ni/Nb/Ni composite interlayer

A breakthrough in bonding technology has created high-strength HEC joints capable of withstanding temperatures up to 1000°C at relatively low bonding temperatures. The key innovation is the in-situ construction of a high-melting-point Nb₂Ni layer without generating low-melting-point compounds.

SourceTsinghua University Press·JournalJournal of Advanced Ceramics·DateMar 4, 2025

Orthopedic team from Peking Union Medical College Hospital publishes longest-term follow-up study on post-TKA outcomes in Chinese patients with knee osteoarthritis

A follow-up study of over 20 years provides insight into the long-term effectiveness of TKA for knee disorders in a Chinese cohort, showing high prosthesis survivorship and patient satisfaction rates. The research addresses the lack of data on extended TKA follow-up for Chinese populations.

Versatile BiFeO3 shining in piezocatalysis: From materials engineering to diverse applications

BiFeO3's unique properties make it a promising material for piezocatalysis, with potential applications in organic pollutant degradation, hydrogen production, CO2 reduction, and sterilization. A comprehensive review paper explores its structural features, synthesis methods, optimization strategies, and diverse applications.

SourceTsinghua University Press·JournalJournal of Advanced Ceramics·DateFeb 20, 2025

Unique composite architecture of phosphor-in-glass film coated on different heat-conducting substrates for high-brightness laser lighting

A new type of phosphor-in-glass film converter on heat-conducting substrates has been developed to improve the performance and efficiency of high-brightness laser lighting. The researchers found that the converters with different substrates have varying effects on heat transfer, light transport, and luminescence saturation.

SourceTsinghua University Press·JournalJournal of Advanced Ceramics·DateFeb 19, 2025

The first comprehensive field study on Critical Height Sampling (CHS) – A model-free method for Forest Volume Estimation

A new field study on CHS suggests that this approach could revolutionize forest stand volume estimation, providing consistent results across varying environmental conditions. The method eliminates potential biases from traditional methods and offers efficiency advantages in terms of measurement time.

SourceTsinghua University Press·JournalForest Ecosystems·DateFeb 19, 2025

Carbon emission drivers in the Belt and Road Initiative countries—An empirical analysis based on countries with different income levels

A study analyzes the carbon emission drivers in Belt and Road Initiative countries, finding that economic development and population growth are major contributors. The research also highlights the importance of reducing energy intensity and carbon intensity in middle and high-income countries.

SourceTsinghua University Press·JournalEnergy and Climate Management·DateFeb 13, 2025

Team publishes review of synthetic design strategies for developing high-performance photocatalysts

A research team published a review on synthetic design strategies for developing high-performance photocatalysts. They focus on improving photocatalytic performance for clean energy applications, such as carbon dioxide reduction and plastic waste photoreforming. The review highlights advanced strategies to enhance light absorption and ...

SourceTsinghua University Press·JournalCarbon Future·DateJan 23, 2025

Breaking the traditional interface design: Facet-boosted interface engineering enhances efficient proton transfer and long-term stability of proton ceramic electrolyte cells with composite steam electrodes

A novel composite steam electrode enhances efficient proton transfer and long-term stability in PCECs, demonstrating improved durability under high-humidity conditions. The facet-boosted interface engineering boosts proton conductivity by an entire order of magnitude compared to nanosized BZY.

SourceTsinghua University Press·JournalJournal of Advanced Ceramics·DateJan 23, 2025

Fabrication and high temperature electrical conductivity of polymer-derived SiHfBCN ceramic coating: A wireless surface acoustic wave sensor material?

Researchers developed polymer-derived SiHfBCN ceramic coating with excellent high-temperature conductivity and stability, suitable for wireless surface acoustic wave sensors. The coating's thickness remains consistent across different temperatures, indicating its stability in extreme environments.

SourceTsinghua University Press·JournalJournal of Advanced Ceramics·DateJan 13, 2025