Synthetic control of correlated disorder in UiO-66 frameworks
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Directional Intermolecular Interactions for Precise Molecular Design of a High‑ T c Multiaxial Molecular Ferroelectric
Quasi-spherical molecules have recently been developed as promising building blocks for constructing high-performance molecular ferroelectrics. However, although the modification of spherical molecule
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CUB-5: A Contoured Aliphatic Pore Environment in a Cubic Framework with Potential for Benzene Separation Applications
One prominent aspect of metal organic frameworks (MOFs) is the ability to tune the size, shape, and chemical characteristics of their pores. MOF-5, with its open cubic connectivity of Zn4O clusters jo
NIAID Data Ecosystem50
Development and Loss of Ferromagnetism Controlled by the Interplay of Ge Concentration and Mn Vacancies in Structurally Modulated Y 4 Mn 1− x Ga 12− y Ge y
The cubic intermetallic phase Y4Mn1−xGa12−yGey (x = 0−0.26, y = 0−4.0) has been isolated from a molten gallium flux reaction. It presents a rare example of a system where ferromagnetism can be induced
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Highly Stable Zinc-Based Metal–Organic Frameworks and Corresponding Flexible Composites for Removal and Detection of Antibiotics in Water
Antibiotic contamination of water bodies is a major environmental concern. Exposure to superfluous antibiotics is an ecological stressor correlated to the development of antibiotic resistance. Thus, i
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Integrating the Pillared-Layer Strategy and Pore-Space Partition Method to Construct Multicomponent MOFs for C2H2/CO2 Separation
Introducing multiclusters and multiligands (mm) in a well-defined array will greatly increase the diversity of metal–organic frameworks (MOFs). Here, a series of porous mm-MOFs constructed from a pill
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