Zirconium featuring- metal-organic frameworks (MOFs) have emerged as a potential class of architectures with wide-ranging applications. These porous crystalline assemblies exhibit exceptional chemical stability, high surface areas, and tunable pore sizes, making them ideal for a wide range of applications, amongst. The preparation of zirconium-base
Nanoshel: Titanium Metal-Organic Frameworks: Emerging Photocatalysts
Metal-organic frameworks (MOFs) compounds fabricated with titanium nodes have emerged as promising agents for a broad range of applications. These materials display exceptional chemical properties, including high conductivity, tunable band gaps, and good durability. The special combination of these characteristics makes titanium-based MOFs highly p
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Lead Selenide Quantum Dots: Synthesis, Properties, and Applications
Lead selenide quantum dots (QDs) are a type of II-VI compound that exhibit exceptional optical and electronic properties. Their synthesis typically involves colloidal methods, allowing for precise control over size and shape. The unique tunable nature of these QDs leads to a strong dependence of their band gap on diameter, resulting in tunable emis