3D Printing and Pyrolysis of Optical ZrO2 Nanostructures by Two-Photon Lithography: Reduced Shrinkage and Crystallization Mediated by Nanoparticles Seeds

被引:30
|
作者
Desponds, Anne [1 ]
Banyasz, Akos [1 ]
Chateau, Denis [1 ]
Tellal, Azeddine [1 ]
Venier, Amandine [2 ]
Meille, Sylvain [3 ]
Montagnac, Gilles [4 ]
Chevalier, Jerome [3 ]
Andraud, Chantal [1 ]
Baldeck, Patrice L. [1 ]
Parola, Stephane [1 ]
机构
[1] Univ Lyon 1, Ecole Normale Super Lyon, CNRS UMR 5182, Lab Chim, 46 Allee Italie, F-69364 Lyon, France
[2] Mathym SAS, 22 Rue Aulnes, F-69410 Champagne Au Mont Dor, France
[3] Univ Lyon, INSA Lyon, UCBL, CNRS,MATEIS,UMR 5510, 7 Ave Jean Capelle, F-69621 Villeurbanne, France
[4] Univ Lyon 1, Ecole Normale Super Lyon, CNRS UMR 5276, Lab Geol, 46 Allee Italie, F-69364 Lyon, France
关键词
3D printing; nanoparticles; subwavelength nanostructures; two-photon lithography; zirconia; POLYMERIZATION; STEREOLITHOGRAPHY; NANOCOMPOSITES; FABRICATION; STRENGTH;
D O I
10.1002/smll.202102486
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Two-photon lithography is a potential route to produce high-resolution 3D ceramics. However, the large shrinkage due to the elimination of an important organic counterpart of the printed material during debinding/sintering remains a lock to further development of this technology. To limit this phenomenon, an original approach based on a composite resin incorporating 45 wt% ultrasmall (5 nm) zirconia stabilized nanoparticles into the zirconium acrylate precursor is proposed to process 3D zirconia microlattices and nanostructured optical surfaces. Interestingly, the nanoparticles are used both as seeds allowing control of the crystallographic phase formed during the calcination process and as structural stabilizing agent preventing important shrinkage of the printed ceramic. After 3D photolithography and pyrolysis, the weight and volume loss of the microstructures are drastically reduced as compared to similar systems processed with the reference resin without nanoparticles, and stable 3D microstructures of cubic zirconia are obtained with high spatial resolution. In the case of a patterned surface, the refractive index of 2.1 leads to a diffraction efficiency large enough to obtain microfocusing with linewidths of 0.1 mu m, and the demonstration of a microlens array with a period as small as 0.8 mu m.
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页数:14
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