Charge-density-dependent partitioning of Cs+ and K+ into nickel hexacyanoferrate matrixes

被引:32
作者
Jeerage, KM [1 ]
Steen, WA [1 ]
Schwartz, DT [1 ]
机构
[1] Univ Washington, Dept Chem Engn, Seattle, WA 98195 USA
关键词
D O I
10.1021/la0114427
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nickel hexacyanoferrate (NiHCF) is a zeolite-like Prussian Blue analogue, where cyanide bonding between nickel and iron creates a cubic unit cell with intercalated cations that balance the negative charge on the matrix. Partitioning of Cs+ and K+ into electrodeposited NiHCF thin films is examined as a function of solution composition and the charge density on the matrix. Potential cycle and hold sequences in the range -25 to + 1125 mVversus saturated calomel electrode are used to reversibly intercalate Cs+ and K+ mixtures into NiHCF matrixes possessing variable charge densities. Energy-dispersive X-ray spectroscopy is used to quantify the intercalated cation content in the matrix, and Raman spectroscopy is used to confirm the oxidation state of the matrix. Cs+/K+ partitioning is investigated over the range 10(-2) < [K+]/[Cs+] < 10(5). Oxidized NiHCF, with its modest matrix charge density (approximate to - 190 C/cm(3)) and low concentration of intercalated alkali cations, is cesium-selective for all solution compositions examined. In contrast, reduced NiHCF, with its larger charge density (approximate to -560 C/cm(3)) and higher concentration of intercalated cations, is selective for cesium over potassium for low [Cs+] but exhibits a selectivity reversal as [Cs+] increases. An equilibrium isotherm developed for ion partitioning in zeolites shows that high-charge-density reduced NiHCF matrixes exhibit strong repulsive Cs--Cs+ interactions when the intercalated alkali cation fraction exceeds 60% Cs+ in the solid. These repulsive interactions give rise to a stable solid composition possessing approximately 75% Cs+ and 25% K+ over a range of solution compositions.
引用
收藏
页码:3620 / 3625
页数:6
相关论文
共 21 条
[1]  
ABE M, 1995, ION EX SOLV, V12, P381
[2]   MORPHOLOGICAL VARIATION AT THE [NIFE(CN)6]2-/- DERIVATIZED NICKEL ELECTRODE - A TECHNIQUE FOR THE EVALUATION OF ALKALI CATION CONTAINING SOLUTIONS [J].
AMOS, LJ ;
DUGGAL, A ;
MIRSKY, EJ ;
RAGONESI, P ;
BOCARSLY, AB ;
FITZGERALDBOCARSLY, PA .
ANALYTICAL CHEMISTRY, 1988, 60 (03) :245-249
[3]   POLYNUCLEAR NICKEL HEXACYANOFERRATES - MONITORING OF FILM GROWTH AND HYDRATED COUNTER-CATION FLUX STORAGE DURING REDOX REACTIONS [J].
BACSKAI, J ;
MARTINUSZ, K ;
CZIROK, E ;
INZELT, G ;
KULESZA, PJ ;
MALIK, MA .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1995, 385 (02) :241-248
[4]   ION EXCHANGE IN FELSPATHOIDS AS A SOLID-STATE REACTION [J].
BARRER, RM ;
FALCONER, JD .
PROCEEDINGS OF THE ROYAL SOCIETY OF LONDON SERIES A-MATHEMATICAL AND PHYSICAL SCIENCES, 1956, 236 (1205) :227-&
[5]   CHEMICALLY DERIVATIZED NICKEL SURFACES - SYNTHESIS OF A NEW CLASS OF STABLE ELECTRODE INTERFACES [J].
BOCARSLY, AB ;
SINHA, S .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1982, 137 (01) :157-162
[6]   Analytical applications of cooperative interactions associated with charge transfer in cyanometalate electrodes: Analysis of sodium and potassium in human whale blood [J].
Coon, DR ;
Amos, LJ ;
Bocarsly, AB ;
Bocarsly, PAF .
ANALYTICAL CHEMISTRY, 1998, 70 (15) :3137-3145
[7]   A REVIEW OF INFORMATION ON FERROCYANIDE SOLIDS FOR REMOVAL OF CESIUM FROM SOLUTIONS [J].
HAAS, PA .
SEPARATION SCIENCE AND TECHNOLOGY, 1993, 28 (17-18) :2479-2506
[8]   In situ oxidation state profiling of nickel hexacyanoferrate derivatized electrodes using line-imaging Raman spectroscopy and multivariate calibration [J].
Haight, SM ;
Schwartz, DT ;
Lilga, MA .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1999, 146 (05) :1866-1872
[9]  
Helferich, 1962, ION EXCHANGE, P95
[10]   Correlating nanoscale structure with ion intercalation in electrodeposited nickel hexacyanoferrate thin films [J].
Jeerage, KM ;
Steen, WA ;
Schwartz, DT .
CHEMISTRY OF MATERIALS, 2002, 14 (02) :530-535