Welcome to RenewTech Chronicles, your go-to source for the latest technological progress and news in the field of renewable energy. With a dedicated focus on providing insights from a research professional viewpoint, our blog offers a comprehensive platform to explore the cutting-edge advancements that are shaping the future of clean and sustainable energy.
At RenewTech Chronicles, we understand the critical role that renewable energy plays in addressing the global challenges of climate change, environmental sustainability, and energy security. With our finger on the pulse of the industry, we bring you the most up-to-date information on breakthrough technologies, innovative solutions, and emerging trends from the forefront of renewable energy research.
Our team of expert contributors, including researchers, scientists, and industry professionals, leverages their in-depth knowledge and expertise to provide you with engaging and informative articles. We delve into a wide range of renewable energy sectors, including solar power, wind energy, hydropower, bioenergy, geothermal energy, and more. Our goal is to keep you informed about the latest research findings, technological advancements, and policy developments that are shaping the renewable energy landscape.
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Join us on this exciting journey as we explore the frontiers of renewable energy technology, highlighting the incredible progress being made by research professionals around the globe. Together, let’s unlock the power of renewable energy and pave the way towards a sustainable and resilient future.

Predictions indicate that global PV capacity will exceed 22 TW by 2050. Over 70% of solar energy incident on commercial photovoltaic panels is dissipated as heat, leading to decreased electrical performance. The efficiency of PV panels decreases significantly with increased operating temperature. High-efficiency and low-cost thermal management methods are necessary to enhance power generation from…
Perovskite solar cells (PSCs) have competitive efficiency but suffer from stability issues. The energy loss processes involve pinholes, defects, or poor device quality, which may both lower efficiency and make the device more prone to instability. A recent study published in Nature Communications,(1) analyzes a large dataset of Maximum Power Point Tracking (MPPT) operational ageing…
Photoelectrochemical (PEC) water splitting is a promising method for sustainable hydrogen production. High-efficiency photoanodes are crucial for achieving high solar-to-hydrogen conversion efficiency. Organometal halide perovskites (OHPs), which is well known as a promising photovoltaic material, have been highlighted as potential materials for high-efficiency PEC water splitting. In the photovoltaic application, photo-excited charge carriers are extracted…
Wind energy has significant growth potential and applicability on a global scale. Europe, China, and offshore wind turbines set new records in 2020, installing over 93 GW for a total of 742.7 GW. Approximately 2.4% of wind turbine blades must be decommissioned annually in Europe, but wind turbine blades are rarely recycled due to their…
Photocatalytic water splitting is an active area of research in materials chemistry. Photo-irradiated semiconductor materials provide electrons or holes to water to split oxygen and hydrogen. They can be used as photoanode (oxygen evolution) and photocathode (hydrogen evolution), (1) and sometimes both are combined or even connected to each other to directly produce oxygen and…
During the first charge and discharge of a Li-ion battery, the electrode material reacts with electrolyte at the solid-liquid interface. After the reaction a thin film is formed on the surface, where Li ion is embedded. It is called solid electrolyte interphase (SEI) and its typical thickness is 100-120 nm, and they are composed of…
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