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钙钛矿太阳能电池市场:2024年至2029年预测Perovskite Solar Cells Market - Forecasts from 2024 to 2029 |
钙钛矿太阳能电池市场预计在预测期内复合年增长率为 31.63%。
钙钛矿太阳能电池是由具有钙钛矿结构的化合物组成的太阳能电池。电池化合物包括卤化锡、卤化铅甲铵和卤化铯铅无机物。这些化合物具有成本效益、易于製造且广泛使用。
钙钛矿太阳能电池的需求量很大,因为吸热材料成本低廉并且能够将太阳能转换为电能。此外,该电池还提供灵活性、透明度和轻质面板。由于这些特征,该行业获得了商业性吸引力,并参与了由多个机构和企业主导的计划。
随着清洁能源需求的增加,对太阳能玻璃、光电薄膜及配套设备等创新材料的需求也随之增加。钙钛矿太阳能电池目前正在开发和商业化。透过使太阳能更加永续性并提供经济的材料来满足消费者的需求。一些组织正在进行开拓钙钛矿太阳能电池市场的计划。
例如,玻璃整合公司Panasonic HD 製造了钙钛矿太阳能电池,旨在将其作为「发电玻璃」融入各种建筑物的架构中。作为建筑和能源行业的前瞻性思维和创造性选择,该公司打算提供新鲜、尖端的解决方案,以补充建筑本身的设计。
身为太阳能领域的市场领导者,晶科能源每年投入大量资金进行研发,以推动技术创新。迄今为止,晶科能源已申请全球专利超过3,800项,获得专利超过3,500项,并凭藉不断的科技进步,为全球太阳能产业带来高效、高价值的能源解决方案,进一步赋能钙钛矿太阳能电池市场。
美国和加拿大等北美国家对钙钛矿电池的需求源自于对可再生太阳能发电装置的渴望。消费者对绿色能源偏好的变化可能会推动北美的需求。电池在汽车和航太应用中的使用也促进了需求。加拿大航太部门创造了超过 270 亿加元(约 208 亿美国)的 GDP。加拿大航太部门约 88% 为民用领域,12% 为国防相关领域。除此之外,蒙特娄也是继西雅图、华盛顿和法国图卢兹之后的世界第三大航太航天中心,占加拿大航太研发的75%以上。整体而言,加拿大占全球航太航太业销售额的 5%。
另外,地方政府热衷于透过融资、奖励和政策变化来促进可再生能源的采用。同时,研究人员和科学家不断寻求提高钙钛矿太阳能电池的效率、稳定性和製造方法。许多公司也在探索钙钛矿技术收益的机会,扩大生产并开拓其他领域。
对清洁和可再生能源的需求不断增长以及人们对气候变迁的认识不断提高,推动了北美钙钛矿太阳能电池市场的成长。随着技术的进步和成本的降低,预计将有助于满足地区能源需求,同时减少碳排放。
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The perovskite solar cells market is expected to grow at a compound annual growth rate of 31.63% over the forecast period.
A perovskite solar cell refers to a cell composed of a perovskite-structured compound. The cell compounds comprise tin halide, methylammonium lead halide, and inorganic cesium lead halide. These compounds are cost-effective, easy to manufacture, and widely available.
The increased demand for perovskite cells can be ascribed to its low-cost thermal absorption material and excellent solar energy conversion into electricity. Furthermore, the cells provide flexibility, transparency, and lightweight panels. With such characteristics, the industry has acquired commercial traction, engaging several institutions and company-led projects.
As demand for clean energy grows, so does the demand for innovative materials for solar glass, PV films, and supporting equipment. Perovskite cells are currently being developed and commercialized. This fulfills the needs of consumers by offering them a material that increases the sustainability of solar energy and makes it economical. Multiple organizations are undertaking projects to explore the market of perovskites solar cells.
For instance, glass-integrated Panasonic HD created perovskite solar cells that are intended to blend in with the architecture of diverse architectural buildings as "power-generating glass." The company intends to present its solution as an advanced and creative option in the architectural and energy industries, offering a fresh and cutting-edge solution that compliments the design of the buildings themselves.
As a market leader in the solar sector, JinkoSolar spends heavily on R&D each year to drive technical innovation, constantly expanding its patent portfolio and setting global records in R&D achievements. To date, JinkoSolar has applied for over 3,800 global patents and received over 3,500, bringing more efficiency and better-value energy solutions to the global solar photovoltaic industry via continual scientific advances, which further fuels the perovskite cells market.
North American countries such as the United States and Canada need Perovskite Cells, which can be ascribed to a desire for renewable solar power generation devices. The shift in consumer preference for green energy will likely fuel demand in North America. The use of cells in automotive and aerospace applications also contributes to the demand. Canada's aerospace sector generated more than C$27 billion (roughly US$20.8 billion) in GDP. Approximately 88% of Canada's aerospace sector is civil, with 12% being defense-related. Along with this, Montreal is the world's third-largest aerospace hub, after Seattle, Washington, and Toulouse, France, accounting for more than 75% of Canadian aerospace research and development. Overall, Canada accounts for 5% of worldwide aerospace sales.
Apart from this, regional governments are keen on promoting Renewable Energy deployment through financing, incentives, and policy changes. At the same time, researchers and scientists are continually searching for enhanced efficiency, stability, and manufacturing methods for the perovskite solar cell. Many firms are also exploring opportunities to monetize perovskite technology, scaling up production, and exploring other sectors.
The rising demand for clean and renewable energy, along with the developing consciousness of climate change, is contributing to the North American perovskite solar cell market's growth. As technology advances and gets cheaper, it is predicted that it will be useful in meeting the region's energy needs while reducing the carbon footprint.
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