New Hybrid Nanomaterial Based on Self- Assembly of Cyclodextrins and Cobalt Prussian Blue Analogue Nanocubes

被引:19
作者
Carvalho, Caio L. C. [1 ]
Silva, Anna T. B. [1 ]
Macedo, Lucyano J. A. [1 ]
Luz, Roberto A. S. [2 ]
Neto, Jose M. Moita [1 ]
Rodrigues Filho, Ubirajara P. [2 ]
Cantanhede, Welter [1 ]
机构
[1] Univ Fed Piaui, Ctr Ciencias Nat, Dept Quim, BR-64049550 Teresina, Piaui, Brazil
[2] Univ Sao Paulo, Inst Quim Sao Carlos, BR-13563120 Sao Paulo, Brazil
关键词
cobalt Prussian blue analogue; -cyclodextrin; supramolecular; self-assembly; LITHIUM-ION BATTERIES; BETA-CYCLODEXTRIN; INCLUSION COMPLEX; NANOPARTICLES; ACID; ELECTROCHEMISTRY; TEMPERATURE; AZOMETHINE; MONOLAYERS;
D O I
10.3390/ijms160714594
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Supramolecular self-assembly has been demonstrated to be a useful approach to developing new functional nanomaterials. In this work, we used a cobalt Prussian blue analogue (PBA, Co-3[Co(CN)(6)](2)) compound and a -cyclodextrin (CD) macrocycle to develop a novel host-guest PBA-CD nanomaterial. The preparation of the functional magnetic material involved the self-assembly of CD molecules onto a PBA surface by a co-precipitation method. According to transmission electronic microscopy results, PBA-CD exhibited a polydisperse structure composed of 3D nanocubes with a mean edge length of 85 nm, which became shorter after CD incorporation. The supramolecular arrangement and structural, crystalline and thermal properties of the hybrid material were studied in detail by vibrational and electronic spectroscopies and X-ray diffraction. The cyclic voltammogram of the hybrid material in a 0.1 molL(-1) NaCl supporting electrolyte exhibited a quasi-reversible redox process, attributed to Co2+/Co3+ conversion, with an E-1/2 value of 0.46 V (vs. SCE), with higher reversibility observed for the system in the presence of CD. The standard rate constants for PBA and PBA-CD were determined to be 0.07 and 0.13 s(-1), respectively, which suggests that the interaction between the nanocubes and CD at the supramolecular level improves electron transfer. We expect that the properties observed for the hybrid material make it a potential candidate for (bio)sensing designs with a desirable capability for drug delivery.
引用
收藏
页码:14594 / 14607
页数:14
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