Investigation of Aluminum Binding to a Datura innoxia Material Using 27Al NMR
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Summary
Al binding to biomaterial derived from cell wall fragments of the plant Datura innoxia has been investigated using solid-state 27Al NMR spectroscopy and carboxylate groups have been determined to be the responsible functionalities for Al3+ binding to this material.
- Type
- article
- Published
- 1998-07-30
- Cited by
- 16
- References
- 0
- OpenAlex
- https://openalex.org/W2019665063
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:95198887
Keywords
Biomaterial, Datura, Carboxylate, Chemistry, Nuclear magnetic resonance spectroscopy
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- Competitive Metal Ion Binding to a Silicate-Immobilized Datura innoxia Biomaterial
- 113Cd-NMR spectrometry of Cd2+ binding sites on algae and higher plant tissues
- Solid-state 113Cd NMR studies of metal-binding to a Datura innoxia biomaterial
- Spectroscopic Comparison of Eu(III) Binding to Various Biosorbents
- Speciation analysis of aluminium(III) in natural waters and biological fluids by complexing with various catechols followed by differential pulse voltammetry detection.
- Identification of the tri-Al tricitrate complex in Plantago almogravensis by hydrophilic interaction LC with parallel ICP-MS and electrospray Orbitrap MS/MS detection.
- Interactions of aluminum with biochars and oxidized biochars: implications for the biochar aging process.
- Dual role of biochars as adsorbents for aluminum: the effects of oxygen-containing organic components and the scattering of silicate particles.
- Effective alleviation of aluminum phytotoxicity by manure-derived biochar.
- Characterisation and optimisation of biosorption of metals by dealginated seaweed
- Phytolith‐rich biochar: A potential Si fertilizer in desilicated soils
- Comparative Metal Ion Binding to Native and Chemically Modified Datura innoxia Immobilized Biomaterials
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