日韩三级黄色免费网站-久久精品人妻一区二区三区a-中文字幕乱码日韩乱码在线-人妻熟妇av一区二区三区-久久精品欧美伊人婷婷1024-久久婷婷激情综合色综合俺也去-在线观看你懂的免费视频-国产在线观看精品卡一-99re国产熟女四区精品

Solution

Photovoltaic Solar Cells

Photovoltaic Solar Cells

Main Target Materials:AMTO, ICO, IXO, ITO, AZO, MZO, CTO, ZTO, GAZO, ZnO, NiO, SnO?, Cu, Ni, Ti, Mo, In, Cr, Si, CuGa, ZnTe, CuNi

Evaporation Materials:ITO, IWSO, IXO, ICO, IMO, ZTO, AZO, GAZO, NiO, Mo, IZRO, ZnO, SnO?, Cu, In, Se

The rapid evolution of photovoltaic technology—encompassing emerging solar cell types such as heterojunction (HJT), perovskite, back contact (BC), and CdTe thin-film cells—is driving increasingly stringent demands for high-performance thin-film materials.

1.HJT Solar Cells

Sputtering targets are used to create transparent conductive films (TCFs), such as indium tin oxide (ITO) and indium zinc oxide (IZO), as well as metal back electrodes. These materials are crucial for improving carrier collection and enhancing interface passivation, resulting in a significant boost to overall conversion efficiency.

2.Perovskite Solar Cells

Sputtering targets are widely utilized for the deposition of transparent electrodes, buffer layers, and interface modification layers. These applications improve film density and overall stability, thereby enhancing the long-term reliability of the devices.

3.BC Solar Cells

Utilizing high-performance sputtering targets to deposit back contact and transparent conductive layers enables optimized light capture and superior current collection performance, maximizing device efficiency.

4.CdTe Thin-Film Solar Cells

Sputtering targets are crucial for the deposition of transparent conductive layers, buffer layers, and back electrode layers. These layers ensure superior film uniformity, conductivity, and weather resistance, ultimately enhancing the overall performance of the device.

Key Roles

  Enhance Photoelectric Conversion Efficiency

  Extend Device Lifespan

  Reduce Manufacturing Costs

  Support the Development of New Technologies