TCI D5155 is an organic compound specifically designed for use in advanced materials research, particularly in the development of perovskite solar cells (PSCs). This compound plays a critical role in the fabrication of high-performance photovoltaic devices by serving as an active component in the light-absorbing layer. Its unique molecular structure enables efficient charge transport and light absorption, making it essential for achieving optimal energy conversion efficiency in laboratory settings. As a key material in the field of electronic materials, it supports ongoing innovation in renewable energy technologies.
The compound's chemical stability and controlled reactivity make it a preferred choice for researchers working in high-precision environments. Its molecular structure, which includes a thieno[3,4-b][1,4]dioxine backbone connected to aniline groups, contributes to its excellent electronic properties. These properties allow it to form thin, uniform films with high conductivity, which are crucial for the performance of perovskite solar cells. The compound’s ability to maintain structural integrity under various experimental conditions further enhances its reliability in laboratory applications.
In Indonesian laboratories, this material is widely used in research and development projects focused on renewable energy and electronic materials. It is particularly favored for its compatibility with standard laboratory protocols and its role in advancing perovskite-based photovoltaic technologies. Its application supports both academic and industrial efforts to create sustainable energy solutions through cutting-edge material science.
- Perovskite Solar Cell Fabrication: This compound is ideal for creating active layers in PSCs due to its excellent charge transport properties and light absorption capabilities.
- Organic Electronics Research: Its stable molecular structure and controlled reactivity make it suitable for studying organic semiconductor behavior in various electronic applications.
- Thin Film Deposition Studies: The compound’s ability to form uniform, high-quality thin films is crucial for experiments involving film morphology and optoelectronic performance.
- Energy Conversion Efficiency Testing: It is used in experiments aimed at optimizing the efficiency of photovoltaic devices by enhancing light absorption and charge carrier mobility.
- Material Stability Analysis: Its chemical stability under different experimental conditions allows for thorough investigation of material behavior in various environments.
| Brand | TCI |
|---|---|
| CAS number | 1622008-73-4 |
| Molecular formula | — |
| Purity | — |
| Category | Materials Science > Electronic Materials > Perovskite Solar Cell (PSC) Materials |
| Pack sizes | — |
| Physical form | — |
| Storage | Store in a cool, dry place away from direct light and moisture |
This compound should be stored in a cool, dry environment to maintain its chemical stability and prevent degradation. It is recommended to use sealed containers to minimize exposure to air and moisture, which can affect its performance. In laboratory settings, it is important to handle the material with appropriate personal protective equipment, such as gloves and safety goggles, to ensure safe handling. Due to its organic nature, it should be stored away from incompatible substances to avoid any potential chemical reactions. Proper labeling of storage containers is essential for safe retrieval and use. Regular monitoring of storage conditions ensures the material remains suitable for its intended applications in research and development.
—
![4,4'-(2,3-Dihydrothieno[3,4-b][1,4]dioxine-5,7-diyl)bis[N,N-bis(4-methoxyphenyl)aniline] (CAS 1622008-73-4) - TCI D5155 - AMI Scientific](http://amiscientific.com/cdn/shop/files/TCI2510D5155.jpg?v=1769142088&width=1445)