Town Raewyn M, van Leeuwen Herman P
Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Campusvej 55, 5230 Odense, Denmark.
Phys Chem Chem Phys. 2016 Apr 21;18(15):10049-58. doi: 10.1039/c6cp01229a. Epub 2016 Mar 23.
In aqueous dispersions of soft, charged nanoparticles, the physicochemical conditions prevailing within the particle body generally differ substantially from those in the bulk medium. Accordingly it is necessary to define intrinsic descriptors that appropriately reflect the chemical speciation inside the particle's microenvironment. Herein the speciation of divalent metal ions within the body of negatively charged soft nanoparticulate complexants is elaborated for the example case of humic acid association with Cd(ii), Pb(ii) and Cu(ii). The electrostatic effects are described by a two-state model that accounts for counterion condensation in the intraparticulate double layer shell at the particle/medium interface and Donnan partitioning within the bulk of the particle body. Inner-sphere complex formation is defined by an intrinsic binding constant expressed in terms of local reactant concentrations as controlled by the pertinent electrostatic conditions. For the high particle charge density case (Debye length smaller than charged site separation), three distinct intraparticulate metal species are identified, namely free hydrated ions, electrostatically condensed ions, and inner-sphere metal-humic complexes. For all metal ions studied, the electrostatic contribution to the association of the metal ion with the oppositely charged particle is found to account for a substantial fraction of the total metal bound.
在柔软的带电纳米颗粒的水分散体中,颗粒体内普遍存在的物理化学条件通常与本体介质中的条件有很大不同。因此,有必要定义能够适当反映颗粒微环境内化学形态的固有描述符。本文以腐殖酸与镉(II)、铅(II)和铜(II)缔合为例,阐述了带负电的柔软纳米颗粒络合剂体内二价金属离子的形态。静电效应由一个双态模型描述,该模型考虑了颗粒/介质界面处颗粒内双层壳中的反离子凝聚以及颗粒体内的唐南分配。内球络合物的形成由一个固有结合常数定义,该常数根据相关静电条件控制的局部反应物浓度来表示。对于高颗粒电荷密度情况(德拜长度小于带电位点间距),确定了三种不同的颗粒内金属物种,即游离水合离子、静电凝聚离子和内球金属-腐殖质络合物。对于所有研究的金属离子,发现金属离子与带相反电荷颗粒缔合的静电贡献占总结合金属的很大一部分。