2023
DOI: 10.1021/acs.inorgchem.3c01539
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Controllable Synthesis of Hemoglobin–Metal Phosphate Organic–Inorganic Hybrid Nanoflowers and Their Applications in Biocatalysis

Abstract: In recent years, organic–inorganic hybrid nanoflower technology has become an effective method for enzyme immobilization. Here, seven hierarchical flower-like hemoglobin-phosphate organic-inorganic hybrid nanomaterials (Hb-M3(PO4)2 ·nH2O HNFs) were synthesized through an improved universal one-pot wet-chemical method, with Ca2+, Mn2+, Fe2+, Co2+, Ni2+, Cu2+ and Zn2+ as inorganic components. In this synthesis process, the metal cations are successively involved in the coordination reaction with Hb and the meta… Show more

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Cited by 3 publications
(3 citation statements)
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“…(iii) Formation of Laccase@Cu 3 (BTC) 2 Nanofractal Microspheres . Cu 3 (BTC) 2 primary crystals grew continuously in multiple directions on the laccase, and laccase@Cu 3 (BTC) 2 nanofractal microspheres were obtained after 8 h. The following equations describe the formation of laccase@Cu 3 (BTC) 2 nanofractal microspheres Cu 2 + + polypeptide chain [ Cu false( polypeptide chain false) n ] 2 + H 2 BTC HBTC 2 + H + HBTC 2 BTC 3 + H + 3 [ Cu false( polypeptide chain false) n ] 2 + + 2 BTC 3 [ Cu false( polypeptide chain false) n ] 3 ( BTC ) 2 …”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…(iii) Formation of Laccase@Cu 3 (BTC) 2 Nanofractal Microspheres . Cu 3 (BTC) 2 primary crystals grew continuously in multiple directions on the laccase, and laccase@Cu 3 (BTC) 2 nanofractal microspheres were obtained after 8 h. The following equations describe the formation of laccase@Cu 3 (BTC) 2 nanofractal microspheres Cu 2 + + polypeptide chain [ Cu false( polypeptide chain false) n ] 2 + H 2 BTC HBTC 2 + H + HBTC 2 BTC 3 + H + 3 [ Cu false( polypeptide chain false) n ] 2 + + 2 BTC 3 [ Cu false( polypeptide chain false) n ] 3 ( BTC ) 2 …”
Section: Resultsmentioning
confidence: 99%
“…(iii) Formation of Laccase@Cu 3 (BTC) 2 Nanofractal Microspheres . Cu 3 (BTC) 2 primary crystals grew continuously in multiple directions on the laccase, and laccase@Cu 3 (BTC) 2 nanofractal microspheres were obtained after 8 h. The following equations describe the formation of laccase@Cu 3 (BTC) 2 nanofractal microspheres …”
Section: Resultsmentioning
confidence: 99%
“…[ 8–10 ] This process is regulated by metal‐binding sites—specific regions on the protein surface rich in chelating amino acids, notably glutamic acid, aspartic acid, and histidine. [ 11,12 ] Formed nanostructures can exhibit outstanding catalytic performance, [ 13 ] surpassing the activity of the corresponding soluble enzyme, such as a remarkable 450% increase for laccase or up to 7260% for papain. [ 8,14 ] Further, enzyme nanoflowers demonstrate prolonged shelf‐life and exceptional reusability maintained for more than five reaction cycles with minimal loss of catalytic performance.…”
Section: Introductionmentioning
confidence: 99%