crystal engineering
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Inorganics ◽  
2022 ◽  
Vol 10 (1) ◽  
pp. 12
Author(s):  
Matteo Savastano ◽  
Valeria Monini ◽  
Carla Bazzicalupi ◽  
Antonio Bianchi

Iodine-dense polyiodide phases are interesting materials for a number of potential uses, including batteries and solid-state conductors. The incorporation of transition metal cations is considered a promising way to enhance the stability, tune the properties, and influence the architecture of polyiodides. However, several interesting metals, including Cu(II), may suffer redox processes, which generally make them not compatible with the I2/I− redox couple. Herein L, a simple derivative of cyclen, is proposed as a Cu(II) ligand capable of protecting the +2 oxidation state of the metal even in the presence of polyiodides. With a step by step approach, we report the crystal structure of free L; then we present spectrophotometric verification of Cu(II) complex stability, stoichiometry, and formation kinetic in DMF solution, together with Cu(II) binding mode elucidation via XRD analysis of [Cu(L)Cl]ClO4∙CH3CN crystals; afterwards, the stability of the CuL complex in the presence of I− is demonstrated in DMF solution, where the formation of a Cu:L:I− ternary complex, rather than reduction to Cu(I), is observed; lastly, polyiodide crystals are prepared, affording the [Cu(L)I]2I3I5 crystal structure. This layered structure is highly peculiar due to its chiral arrangement, opening further perspective for the crystal engineering of polyiodide phases.


Author(s):  
Guangrui Liu ◽  
Rupeng Bu ◽  
Xin Huang ◽  
Kai Zhong ◽  
Fangbao Jiao ◽  
...  

2022 ◽  
Vol 28 (2) ◽  
Author(s):  
Daniil M. Ivanov ◽  
Nadezhda A. Bokach ◽  
Vadim Yu. Kukushkin ◽  
Antonio Frontera

Author(s):  
Chiara Cappuccino ◽  
David Cusack ◽  
James Flanagan ◽  
Carl Harrison ◽  
Cillian Holohan ◽  
...  

2022 ◽  
Author(s):  
Hui Jiang ◽  
Jun Ye ◽  
Peng Hu ◽  
Shengli Zhu ◽  
Yanqin Liang ◽  
...  

Co-crystallization is an efficient way of molecular crystal engineering to tune the electronic properties of organic semiconductors. In this work, we synthesized anthracene-4,8-bis(dicyanomethylene)4,8-dihydrobenzo[1,2-b:4,5-b’]-dithiophene (DTTCNQ) single crystals as a template to...


CrystEngComm ◽  
2022 ◽  
Author(s):  
Sandra Rabaça ◽  
Isabel Cordeiro Santos ◽  
Gonçalo Lopes ◽  
Vasco Pires Silva da Gama ◽  
Luis Filipe F. Veiros ◽  
...  

The importance of the C-H…N≡C interactions in the crystal engineering of conducting materials was recently put into evidence in a new type of two-dimensional conducting materials with composition (5-CNB-EDT-TTF)4A with...


2022 ◽  
pp. 126523
Author(s):  
Jin-Yang Li ◽  
Fang Liu ◽  
Yu-Ye Li ◽  
Xiao-Yun Bao ◽  
Yue Li ◽  
...  
Keyword(s):  

Author(s):  
TingYun Pai ◽  
Olaf Stefańczyk ◽  
Kunal Kumar ◽  
Corine Mathonière ◽  
Barbara Sieklucka ◽  
...  

The crystal engineering of octacyanidomolybdate(IV) ions and copper(II) complexes with two types of chelating ligands: multidentate blocking, tren = (tris(2 aminoethyl)amine, and bidentate capable of forming unusual organic bridges, tn...


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