Biomass-derived furanic ligands for selective ferric ion chelation

Technology
In development
University

Innovative biomass-derived furanic ligands offer sustainable, biodegradable solutions for selective ferric ion chelation in detergents, outperforming traditional petrochemical chelants in environmental impact and efficiency.

Overview

Biomass-derived furanic ligands present a groundbreaking solution for the selective chelation of ferric ions, specifically designed for use in detergent formulations. These ligands are derived from sustainable, renewable carbon resources and offer superior biodegradability compared to conventional petrochemical-based chelants. The unique structural diversity and functional group availability of furanics enable the development of ligands with high specificity for ferric ions while maintaining low affinity for calcium ions. This innovation addresses the pressing need for environmentally friendly and high-performance chelants in the detergent industry.

Technical specifications

Key features:

  • High specificity for ferric ions: Achieves a high binding constant (log K > 10) for ferric ions, ensuring effective chelation.
  • Low calcium affinity: Maintains a low binding constant (log K < 5) for calcium ions, preventing unwanted interactions.
  • Biodegradability: Offers an eco-friendly alternative to traditional chelants, aligning with green chemistry principles.
  • Structural versatility: Furanic compounds allow for functionalization with carboxylic acids, alcohols, and amines, enhancing their chelating properties and selectivity.
  • Scalable production: Utilizes catalytic strategies, including electrocatalysis, to enable efficient synthesis and potential large-scale application.
Technology readiness level

The development of these biomass-derived furanic ligands has reached Technology Readiness Level 4. The initial evaluation phase involves assessing the binding constants of various furanic compounds to identify promising candidates. Subsequent optimization will enhance the selectivity and efficiency of the top candidates. The research plan includes scalable production methods to facilitate commercial deployment.


About University of Cincinnati

The University of Cincinnati is a comprehensive public research university with an applied, urban-serving character and a significant clinical enterprise. Industry engages through one of the nation's largest cooperative education programs, placing students year-round with corporate R&D and operations teams and creating an on-ramp to sponsored research. An innovation district near campus hosts co-located corporate labs, startup space, and shared prototyping facilities, while the university's integration with a major hospital system enables clinical studies and translation. Research is supported by competitive federal funding from agencies such as NIH and NSF, along with state and industry partnerships. A dedicated technology transfer office manages IP, licensing, corporate agreements, and startup formation, providing flexible models for collaboration.

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