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Cucurbit[7]uril

Updated: 2026-07-15

Overview

Cucurbit[7]uril (CB[7]) is a macrocyclic molecule belonging to the cucurbituril family, synthesized from glycoluril and formaldehyde. It features a rigid, pumpkin-shaped structure with a hydrophobic cavity and polar carbonyl portals, enabling selective encapsulation of guest molecules. CB[7] is renowned for its high binding affinity and stability in aqueous solutions, making it a cornerstone in supramolecular chemistry. First synthesized in the early 2000s, CB[7] has since become a pivotal tool in research and industrial applications. Its ability to form stable complexes with cations, organic molecules, and biomolecules underpins its versatility. Unlike larger homologs (e.g., CB[8]), CB[7] offers a balanced cavity size, ideal for medium-sized guests like adamantyl derivatives or drug molecules.

Physical and Chemical Properties

葫芦脲[7] 259886-50-5 1g/瓶 厂家现货分装样品 克米克武汉克米克生物医药技术有限公司

CB[7] exhibits exceptional thermal stability, decomposing only above 300°C without melting. Its solubility in water (up to 20 mM) and polar solvents like DMSO facilitates diverse experimental setups. The molecule's rigid structure ensures minimal conformational changes during guest binding, contributing to predictable host-guest kinetics. Key spectroscopic signatures include strong carbonyl stretches in IR (~1740 cm⁻¹) and characteristic NMR shifts for portal protons (~5.5 ppm). The cavity's diameter (~7.3 Å) and volume (~279 ų) are optimal for accommodating aromatic or aliphatic guests. Binding constants (Ka) often exceed 10⁵ M⁻¹, driven by hydrophobic effects, hydrogen bonding, and ion-dipole interactions.

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Main Applications

In drug delivery, CB[7] enhances solubility and bioavailability of poorly water-soluble drugs (e.g., camptothecin) via encapsulation. Its non-toxicity and biocompatibility support biomedical applications, including targeted therapy and diagnostics. CB[7] also serves as a molecular "mask" to protect reactive intermediates in catalysis. In nanotechnology, CB[7] templates the assembly of nanoparticles and supramolecular polymers. Its selective binding is exploited in sensors for environmental toxins (e.g., heavy metals) and explosives. Industrial uses include wastewater treatment for pollutant sequestration and fragrance stabilization in cosmetics.

Safety and Storage

葫芦[7]脲 CAS#259886-50-5 纯度98% 小包装 科研湖北鑫宇宏生物医药技术有限公司

CB[7] is generally low-toxicity but may cause irritation upon prolonged exposure. Use gloves, goggles, and lab coats when handling. Avoid generating dust; work in a fume hood if powder dispersion is likely. Store in sealed containers under inert gas (e.g., argon) to prevent moisture absorption. Dispose of waste according to local regulations for organic compounds. Spills should be contained with absorbent materials (e.g., vermiculite) and cleaned promptly. Stability studies indicate CB[7] remains intact for years when stored properly, though long-term aqueous solutions may require refrigeration.

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B2B Procurement Guide

When sourcing CB[7], prioritize suppliers with ISO-certified production and detailed COA (Certificate of Analysis). Key specifications include purity (≥95%), residual solvent levels (<0.1%), and batch-to-batch consistency. Technical support for application optimization (e.g., binding studies) is a valuable supplier attribute. Bulk purchases (100g+) typically reduce costs by 20-30%. Consider regional logistics—some manufacturers offer faster shipping from Asia, while European/US labs provide shorter lead times. Sample testing for intended use (e.g., solubility enhancement) is recommended before large orders.

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