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The building sector is responsible for a third of the global energy consumption and a quarter of greenhouse gas emissions. Phase change materials (PCMs) have shown high potential for latent thermal energy storage (LTES) through their integration in building materials, with the aim of enhancing the efficient use of energy. Although research on PCMs began decades ago, this technology is still far from being widespread. This work analyses the main contributions to the employment of PCMs in the building sector, to better understand the motivations behind the restricted employment of PCM-based LTES technologies. The main research and review studies are critically discussed, focusing on: strategies used to regulate indoor thermal conditions, the variation of mechanical properties in PCMs-based mortars and cements, and applications with ground-coupled heat pumps. The employment of materials obtained from wastes and natural sources was also taken in account as a possible key to developing composite materials with good performance and sustainability at the same time. As a result, the integration of PCMs in LTES is still in its early stages, but reveals high potential for employment in the building sector, thanks to the continuous design improvement and optimization driven by high-performance materials and a new way of coupling with tailored envelopes.
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http://dx.doi.org/10.3390/polym14030620 | DOI Listing |
Front Health Serv
August 2025
Department of Medical Laboratory Sciences, University of Nigeria, Enugu, Nigeria.
Introduction: In sub-Saharan Africa, the burden of sickle cell disease remains high. With annual sickle cell births of about 150,000, Nigeria is reported to have the highest prevalence of the disease globally. This study aimed to explore the views and perspectives of healthcare professionals regarding access to healthcare services for sickle cell disease.
View Article and Find Full Text PDFJ R Soc Interface
September 2025
Department of Mechanical Engineering, University College London, London, UK.
Hospital operating theatre suites are a particularly resource- and energy-intensive component of the health sector. Reducing their carbon footprint presents a significant challenge due to the necessity of maintaining patient safety. In this paper, we apply a multidisciplinary methodology to investigate and assess various strategies aimed at reducing the carbon footprint in hospital theatres.
View Article and Find Full Text PDFNurse Educ Pract
September 2025
Edith Cowan University, School of Nursing and Midwifery, 270 Joondalup Drive, Joondalup, WA 6027, Australia.
Aim: To co-design a resilience-based mentoring program for novice midwives in Western Australia, informed by the experiences of past midwifery graduates and the perspectives of midwives in senior roles.
Background: Effective workforce planning and retention strategies are essential in preventing the continued loss of midwives and in attracting newly qualified midwives to healthcare organisations. Transitioning from student to registered midwife is a known period of vulnerability that requires structured, evidence-informed support.
J Cancer Res Clin Oncol
September 2025
Institute for Community Medicine, Section Epidemiology of Health Care and Community Health, University Medicine Greifswald, Greifswald, Germany.
Purpose: The German sector-based healthcare system poses a major challenge to continuous patient monitoring and long-term follow-up, both essential for generating high-quality, longitudinal real-world data. The national Network for Genomic Medicine (nNGM) bridges the inpatient and outpatient care sectors to provide comprehensive molecular diagnostics and personalized treatment for non-small cell lung cancer (NSCLC) patients in Germany. Building on the established nNGM infrastructure, the DigiNet study aims to evaluate the impact of digitally integrated, personalized care on overall survival (OS) and the optimization of treatment pathways, compared to routine care.
View Article and Find Full Text PDFIn 2019, Brigham and Women's Hospital Department of Medicine (BWH-DOM) established the Health Equity Innovation Pilot (HEIP) program to fund grants led by BWH-DOM faculty members that aimed to address inequities in hospital-based care delivery or outcomes. One-year grants of up to $40,000 total were cofunded by this BWH-DOM program and by the applicant's BWH-DOM division to support health equity research or care innovation interventions. Recipients participated in a learning collaborative, which included community-building, health equity research and advocacy-related educational sessions, and midterm and final presentations.
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