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Phase evolutions of sodium layered oxide cathodes during thermal fluctuations.

Chem Commun (Camb)

January 2025

College of Chemistry and Materials Engineering, Wenzhou University, Wenzhou 325035, China.

Layered transition metal oxide (NaTMO) cathodes are considered highly appropriate for the practical applications of sodium-ion batteries (SIBs) owing to their facile synthesis and high theoretical capacity. Generally, the phase evolution behaviors of NaTMO during solid-state reactions at high temperature closely related to their carbon footprint, prime cost, and the eventual electrochemical properties, while the thermal stability in various desodiated states associated with wide temperature fluctuations are extremely prominent to the electrochemical properties and safety of SIB devices. Therefore, in this review, the influences of sintering conditions such as pyrolysis temperature, soaking time, and cooling rates on the phase formation patterns of NaTMO are summarized.

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In-situ growing carbon nanotubes reinforced highly heat dissipative three-dimensional aluminum framework composites.

J Colloid Interface Sci

December 2024

State Key Laboratory of Precision Welding & Joining of Materials and Structures, Harbin Institute of Technology, Harbin 150001, China. Electronic address:

The demand for lightweight heat dissipation design in highly miniaturized and portable electronic devices with high thermal density is becoming increasingly urgent. Herein, highly thermal conductive carbon nanotubes (CNTs) reinforced aluminum foam composites were prepared by catalyst chemical bath and subsequent in-situ growth approach. The dense CNTs show the intertwined structure features and construct high-speed channels near the surface of the skeletons for efficient thermal conduction, promoting the transport efficiency of heat flow.

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Combined treatment of surgical extrusion and crown lengthening procedure for severe crown-root fracture of a growing patient: a case report.

BMC Oral Health

December 2024

Department of Pediatric Dentistry, Dental Research Institute, Pusan National University Dental Hospital, 20 Geumo-Ro, Mulgeum-Eup, Yangsan-Si, Gyeongsangnam-Do, 50612, Republic of Korea.

Background: Preservation of a healthy periodontium is critical for the long-term success of restored teeth. In cases of extensive caries, tooth fracture, inadequate crown length, and increased esthetic demands, the restorative margins need to be placed apical to the gingival margin. Violation of the biological width due to dental trauma frequently appears in clinical practice.

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Introduction: Resolution 60.29 (18) of the 60th United Nations World Health Assembly urges member states to gather, verify, update, and exchange information on health technologies, especially medical devices. This study assesses Zimbabwe's MRI service availability and cost, identifies disparities, and discusses implications for patient care and healthcare equity, proposing evidence-based improvement strategies.

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Soft exoskeletons (exosuits) are expected to provide a comfortable wearing experience and compliant assistance compared with traditional rigid exoskeleton robots. In this paper, an exosuit with twisted string actuators (TSAs) is developed to provide high-strength and variable-stiffness actuation for hemiplegic patients. By formulating the analytic model of the TSA and decoding the human impedance characteristic, the human-exosuit coupled dynamic model is constructed.

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