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英国代写:钙钛矿细胞研究

英国代写:钙钛矿细胞研究

钙钛矿细胞的相对优势在所有的研究中都是作为背景或文献综述的,这是钙钛矿细胞的结构。研究对这些细胞的结构和工作功能的研究表明,钙钛矿是由一种混合的有机化合物组成的,它也作为一种非常轻和活跃的层。与其他传统细胞相比,制造细胞的材料本身更便宜。Perovskites通常是用卤化铅生产的,与其他太阳能电池材料相比,铅卤化物的生产要容易得多,这也降低了材料成本。

英国代写:钙钛矿细胞研究
这有助于克服在使用太阳能方面的主要困难之一。在使用太阳能的时候,人们常常会考虑到的一个主要问题是所需的基础设施要高得多,而且电池的数量也会很高。成本因此成为一个重要的问题。事实上,在太阳能电池的例子中,安装成本被认为是公司和大型工业没有做出改变的主要原因。如果使用钙钛矿太阳能电池,那么这将有助于解决成本因素。除了成本之外,钙钛矿太阳能电池的简单生产也意味着单个国家可以在生产上进行生产,而不是在国外寻找生产基地。

英国代写:钙钛矿细胞研究

The relative advantage for the use of the perovskite cells that are presented as a background to or literature review in all research works is how the perovskite cells are structured. Research studies on the structure and the working functionalities of these cells identify that the perovskite is seen to be made of a hybrid organic compound which also acts as a very light and active layer. The materials itself involved in the making of the cell are cheaper to produce compared to other conventional cells. Perovskites are usually manufactured using lead halides and the production of lead halides being much easier compared to other solar cell materials which also lead to lessened cost of material.

英国代写:钙钛矿细胞研究
This helps in overcoming one of the major difficulties in the context of using solar energy. When using solar energy, one of the main issues that are often brought into consideration is that the infrastructure needed would be much higher and the number of cells would also be high. Costs hence become an important concern. In fact, in the case of solar cells, costs of installation are cited as a major reason for why companies and big industries have not made the change. If perovskite solar cells were to be used instead, then this would help in addressing the cost factor. Next to cost, the easy production of the Perovskite solar cells would also mean that individual countries could work on their production rather than look for manufacturing sites outside their own country.

 

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