<p>We report four new A-site vacancy ordered thiocyanate double double perovskites,</p><p>A1xfNi[Bi(SCN)6]1x3 }, A = K<sup>+</sup>, NH4<sup>+</sup>, CH3(NH3)<sup>+</sup> (MeNH<sub>3</sub><sup>+</sup>) and C(NH<sub>2</sub>)<sub>3</sub><sup>+</sup> (Gua<sup>+</sup>), including the first examples of thiocyanate perovskites containing organic A-site cations. We show, using a combination of X-ray and neutron diffraction, that the structure of these frameworks depends on the A-site cation, and that these frameworks possess complex vacancy-ordering patterns and cooperative octahedral tilts distinctly different from atomic perovskites. Density functional theory calculations uncover the energetic origin of these complex orders and allow us to propose a simple rule to predict favoured A-site cation orderings for a given tilt sequence. We use these insights, in combination with symmetry mode analyses, to show that these complex orders offer a new route to non-centrosymmetric perovskites which render them as excellent candidates for</p><p>piezo- and ferroelectric applications.</p>