The work performed in this project has been done on three new families of MOC nanomaterials: two 1D CPs, [M(o-SPhCO2H/Me)]n M = Cu, Ag, Au and a gold phenylethanethiolate, [Au(SEtPh)]n, that exhibits two successive phase changes upon heat, and a 3D network, [Ag2(1,3-BDT)]n (BDT = benzenedithiolate). Composite films of the yellow emissive [Ag(o-SPhCO2Me)]n mixed with the blue emissive coumarin nanoparticles in an organic matrix, the PVDF (polyvinylidenefluoride) lead to dual emission that is depend with the temperature, up to 120 ˚C, offering great potential for optical thermometry. The formation of transparent and non-luminescent glass of pure amorphous [Au(SEtPh)]n system allows to heat induced local phase changes that are still transparent, but show red emission giving new opportunities for temperature and pressure sensing glasses. Finally the 3D [Ag2(1,3-BDT)]n network, that is a chiral structure, exhibits unprecedented optical properties mixing non linear response and up-conversion. This work has been partially published in three papers:
(1) S. Hawila, A. Abdallah, J.-L. Rukemampunzi, A. Fateeva, G. Ledoux, R. Debord, S. Paihlès, N. Guillou, F. Massuyeau, R. Gautier, A. Mesbah, A Demessence. Chem. Commun., 2022, 58, 8081. A Chiral 3D Silver(I)-Benzenedithiolate Coordination Polymer exhibiting Photoemission and Non-Linear Optical Response. (Invitation in ChemComm Pioneering Investigators collection)
(2) O. Veselska, S. Vaidya, C. Das, N. Guillou, P. Bordet, A. Fateeva, F. Toche, R. Chiriac, G. Ledoux, S. Wuttke, S. Horike, A. Demessence. Angew. Chem. Int. Ed. 2022, 61, e202117261. Cyclic solid-state multiple phase changes with tuned photoemission in a gold thiolate coordination polymer. (HOT PAPER).
(3) O. Veselska, N. Guillou, M. Diaz-Lopez, P. Bordet, G. Ledoux, S. Lebègue, A. Mesbah, A. Fateeva, A. Demessence, ChemPhotoChem, 2022, 6, e202200030. Sustainable and efficient low-energy light emitters: a series of one-dimensional d10 coinage Metal Organic Chalcogenolates, [M(o-SPhCO2H)]n.