Dębowski Maciej, Kullas Mateusz, Czaja Krystyna, Sacher-Majewska Beata, Bączek Marcin, Dranka Maciej, Ostrowski Andrzej, Florjańczyk Zbigniew
Faculty of Chemistry, Warsaw University of Technology, Noakowskiego 3, Warsaw, 00-664, Poland.
Institute of Chemistry, University of Opole, Oleska 48, Opole, 45-052, Poland.
Sci Rep. 2025 May 2;15(1):15447. doi: 10.1038/s41598-025-99757-4.
The synthesis, structure and thermal properties of a one-dimensional coordination polymer based on calcium bis(dimethylphosphate) (CaDMP) are reported. The rod-like particles of CaDMP crystallized from water in a monoclinic space group P2/c, and contained Ca[OP(OCH)] polymeric chains consisting of the octahedrally coordinated Ca ions bridged by the tridentate dimethylphosphate ligands. The variable temperature powder X-ray diffraction measurements showed that this structure undergoes anisotropic thermal expansion upon heating, with no polymorphic transitions occurring up to 190 °C. Thermolysis of CaDMP began around 260 °C leading to the formation of calcium condensed phosphates and volatile oxophosphorus species. A detailed differential scanning calorimetry (DSC) analysis, combined with a fitting of the experimental data to the Avrami or Liu-Mo kinetic models, revealed that CaDMP accelerates isothermal and non-isothermal crystallization of isotactic polypropylene (iPP). DSC and wide-angle X-ray scattering measurements confirmed the presence of α-iPP and β-iPP crystal domains in the systems loaded with CaDMP particles. The crystallographic analysis indicated that β-iPP polymorph formed via epitaxial crystallization on the surface of CaDMP crystals. Mechanical tests proved that the CaDMP-containing composites exhibited better ductility and impact strength than neat iPP.
报道了一种基于双(二甲基磷酸)钙(CaDMP)的一维配位聚合物的合成、结构和热性能。CaDMP的棒状颗粒从水中结晶,属于单斜空间群P2/c,包含由八面体配位的Ca离子通过三齿二甲基磷酸配体桥联而成的Ca[OP(OCH)]聚合物链。可变温度粉末X射线衍射测量表明,该结构在加热时发生各向异性热膨胀,在高达190°C时未发生多晶型转变。CaDMP的热解在约260°C开始,导致形成钙缩合磷酸盐和挥发性氧磷物种。详细的差示扫描量热法(DSC)分析,结合将实验数据拟合到阿弗拉米或刘-莫动力学模型,表明CaDMP加速了全同立构聚丙烯(iPP)的等温及非等温结晶。DSC和广角X射线散射测量证实了在负载CaDMP颗粒的体系中存在α-iPP和β-iPP晶区。晶体学分析表明,β-iPP多晶型是通过在CaDMP晶体表面外延结晶形成的。力学测试证明,含CaDMP的复合材料比纯iPP表现出更好的延展性和冲击强度。