针对特定应用优化您的半导体化合物
利用 CAS SciFinder Discovery Platform™ 的精确检索功能,开发您的下一个创新半导体化合物。
利用 CAS SciFinder Discovery Platform™ 的精确检索功能,开发您的下一个创新半导体化合物。


当今大多数半导体由单一元素(通常是硅)制成,而新一代半导体化合物采用两种或更多元素从根本上改变其特性,使其在功率、速度和光发射方面优于硅。
通过将化合物半导体材料剪裁并集成到异质衬底中的方法,有望开发出具备更优性能或新功能特性的半导体材料,从而推动电子器件、生物传感及光伏等领域的发展。
含钼和硒的半导体化合物在光催化水分解介质制氢和开发先进光电化学器件的半导体合金开发中展现出良好的前景。

通过整合经CAS专家验证的数据及核心索引术语,可深入挖掘化合物半导体材料领域专利与期刊文献的研究价值和潜在机遇
利用高级的 CAS SciFinder® 功能(例如“结果内检索”)和强大的筛选器(例如“物质作用”)加速半导体相关文献的浏览,推动发现与创新。
您可以使用 CAS PatentPak®(CAS SciFinder® 中的高级功能)轻松识别和访问有关半导体化合物的详细专利信息。

您可以使用“二次检索”功能通过分子亚结构优化您的初始参考文献检索。在 CAS Draw 中添加 Mo 和 Se 原子,以进一步将您的检索结果缩小到含有这两种元素的化合物半导体材料。此外,您还可以选择组分数和物质类别,以进一步定义结构检索。
Focus your results on molybdenum and selenium semiconductor compounds to those that fit the role for your application with the CAS SciFinder Substance Role filter. Select the substance role ‘Industrial Manufacture’ to identify only the references on semiconductor manufacturing processes that also fit your previous search and filtering parameters.
Streamline your literature review by exploring an indexed network of patent documents directly within the CAS SciFinder interface. Dive deeper into any patent on molybdenum and selenium semiconductor compounds with an array of options, including full-text PDFs or the interactive reading experience offered by the CAS PatentPak Viewer.
Discover novel insights quickly when reviewing new patent literature with human-curated annotations provided by CAS experts. The CAS PatentPak Viewer interface contains direct links to the location in the patent text where a substance is annotated, saving you time by taking you directly to relevant information.
Probe any patent document directly by substance using the Substances feature found on the patent page in CAS SciFinder. All indexed substances found in the patent can be explored further by clicking on the associated CAS PatentPak button, taking you directly to the location in the text where the substance was annotated.
Take your semiconductor compound R&D to the next level with CAS SciFinder and go from inspiration to innovation faster than ever.


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