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Grafted Cucurbituril

Updated: 2026-08-21

Overview

Grafted cucurbituril represents a class of modified macrocyclic molecules derived from cucurbit[n]urils (CBs), renowned for their rigid pumpkin-shaped structures with hydrophobic cavities and polar portals. The grafting process involves attaching functional groups (e.g., hydroxyl, carboxyl, or amine) to the CB backbone, enhancing solubility and enabling covalent conjugation with other molecules. These derivatives maintain the exceptional host-guest chemistry of parent CBs while offering programmable properties for advanced applications. First developed in the early 2000s, grafted cucurbiturils bridge supramolecular chemistry and materials science, with China emerging as a key producer through academic-industrial collaborations in nanotechnology.

Physical and Chemical Properties

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The physical properties vary significantly based on grafted moieties. Most derivatives exhibit improved water solubility (up to 100 mM) compared to unmodified CBs, crucial for biological applications. Thermal stability typically ranges 250-300°C, with decomposition rather than melting observed. Chemically, grafted CBs demonstrate pH-dependent behavior – carboxylated versions gain negative charge above pH 5, while aminated forms protonate below pH 7. Cavity dimensions (typically 5.5-8.5 Å diameter) can be precisely tuned through side-chain engineering, allowing selective encapsulation of guests like drugs or pollutants.

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Main Applications

In pharmaceuticals, these materials enable targeted drug delivery through host-guest complexes that protect payloads until reaching specific tissues. Over 15 clinical-stage formulations utilize grafted CBs for enhanced bioavailability of poorly soluble drugs. Environmental applications leverage their pollutant capture capacity – sulfonated variants remove >90% of heavy metals from wastewater. Industrial uses include catalytic systems where grafted CBs position reactants for regiospecific transformations, reducing byproducts in fine chemical synthesis.

Safety and Storage

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While generally classified as low hazard (LD50 >2000 mg/kg oral, rat), powdered forms require handling with NIOSH-approved N95 masks to prevent respiratory irritation. Store under argon or nitrogen at 2-8°C for long-term stability, especially for light-sensitive derivatives. Incompatibilities include strong oxidizers and concentrated acids. Spill management requires wet wiping with ethanol/water mixtures – never dry sweep due to dust generation. Transportation typically follows UN3077 (environmentally hazardous substances) for bulk quantities.

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B2B Procurement Guide

Specify the degree of functionalization (typically 1-4 groups per CB unit) and provide analytical requirements (HPLC purity >95% standard). Bulk orders (kg-scale) require 6-8 month lead time due to complex purification processes. Key evaluation criteria include: 1) Batch-to-batch consistency in substitution pattern (NMR verification), 2) Residual solvent levels (<500 ppm DMSO), and 3) Certificates of Analysis detailing cavity occupancy tests. For research samples, prioritize suppliers offering characterization data (e.g., ITC binding constants).

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