We report the possibility of extending the so-called stairlike Aurivilius phases in the pseudobinary BiNbO-ABiNbO (A = Ba and Sr) over a wide range of compositions. These phases are characterized by a discontinuous stacking of [BiO] slabs and perovskite blocks, leading to long-period intergrowths stabilized as a single phase. When analyses from precession electron diffraction tomography and X-ray and neutron powder diffraction are combined, the monoclinic incommensurately modulated structure with q = αa* + γc* previously proposed for the ABiNbO composition could be generalized to the BiNbO-ABiNbO (A = Ba and Sr) compounds. Considering the compositions expressed as (A,Bi)Nb O, the stacking sequence associated with compositions ranging from x = / to / is governed by the component γ of the modulation vector and can be predicted following a Farey tree hierarchy independently to the A cation. The length of the steps, characteristic of the stairlike nature, is controlled by the α component and depends on the substitution ratio A/Bi and the nature of A (A = Ba and Sr). This study highlights the compositional flexibility of stairlike Aurivillius phases.

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http://dx.doi.org/10.1021/acs.inorgchem.7b03026DOI Listing

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