Native Crystal Growth Revealed by a Joint Microscopy-Calorimetry Technique in (GeS2)0.1(Sb2S3)0.9 Thin Amorphous Films: A Critical Role of Internal Stress and Mechanical Defects

被引:1
作者
Svoboda, Roman [1 ]
Prikryl, Jan [2 ]
Provotorov, Pavel [2 ,3 ]
Kolobov, Alexander V. [3 ]
Krbal, Milos [2 ]
机构
[1] Univ Pardubice, Fac Chem Technol, Dept Phys Chem, Pardubice 53210, Czech Republic
[2] Univ Pardubice, Fac Chem Technol, Ctr Mat & Nanotechnol CEMNAT, Pardubice 53002, Czech Republic
[3] Herzen State Pedag Univ Russia, Inst Phys, Dept Phys Elect, St Petersburg 191186, Russia
关键词
CHALCOGENIDE GLASS-CERAMICS; OPTICAL-PROPERTIES; RAMAN-SPECTRA; PHASE-CHANGE; CRYSTALLIZATION; RELAXATION; KINETICS; TEMPERATURE; TRANSITION; STIBNITE;
D O I
10.1021/acs.cgd.3c01356
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A novel joint microscopy-calorimetry technique pioneered in the present thin film research was used to investigate the influence of the substrate type on the crystal growth in (GeS2)(0.1)(Sb2S3)(0.9) thin films crystallizing from the free surface. The explored temperature ranges were 205-285 and 210-350 degrees C for microscopy and calorimetry, respectively. Identical temperature dependences of the macroscopic and microscopic crystal growth rates, crystal growth activation energies (decreasing from 333 to 277 kJ<middle dot>mol(-1)), and values of the Ediger's decoupling parameter (decreasing from 0.63 to 0.55) were obtained for as-deposited thin films on Kapton as well as white glass substrates, confirming the negligible influence of the substrate nature. However, both types of as-deposited films exhibited markedly accelerated crystal growth compared to the powdered thin film (scraped-off of the substrate), for which the formation rate of the crystalline phase was practically identical to the native behavior of bulk glass. This unambiguously confirms the marked influence of the crystal-growth-accelerating internal stresses being built up during the heating of the thin film firmly attached to the substrate, where each of the two materials has a different thermal expansion coefficient. The unmatched accuracy and resolution of the joint microscopy-calorimetry approach were demonstrated, with similar subtle intrinsic trends in the crystal growth behavior being recognized by both techniques. Future prospects of the simultaneous in situ polarization microscopy measurements of crystal growth in the as-deposited thin films were introduced and discussed.
引用
收藏
页码:1724 / 1736
页数:13
相关论文
共 77 条
[1]   Introduction of Chalcogenide Glasses to Additive Manufacturing: Nanoparticle Ink Formulation, Inkjet Printing, and Phase Change Devices Fabrication [J].
Ahmed Simon, A. ;
Badamchi, B. ;
Subbaraman, H. ;
Sakaguchi, Y. ;
Jones, L. ;
Kunold, H. ;
van Rooyen, I. J. ;
Mitkova, M. .
SCIENTIFIC REPORTS, 2021, 11 (01)
[2]   Granulation, Phase Change, and Microstructure - Kinetics of Phase Change. III [J].
Avrami, M .
JOURNAL OF CHEMICAL PHYSICS, 1941, 9 (02) :177-184
[3]   Kinetics of phase change I - General theory [J].
Avrami, M .
JOURNAL OF CHEMICAL PHYSICS, 1939, 7 (12) :1103-1112
[4]  
Avrami M., 1940, J. Chem. Phys, V8, P212, DOI [10.1063/1.1750631, DOI 10.1063/1.1750631]
[5]   Crystal growth in (GeS2)x(Sb2S3)1-x thin films [J].
Bartak, Jaroslav ;
Podzemna, Veronika ;
Malek, Jiri ;
Eising, Gert ;
Kooi, Bart J. .
JOURNAL OF NON-CRYSTALLINE SOLIDS, 2015, 410 :7-13
[6]   Chalcogenide glass-ceramics for radiation shielding applications [J].
Boukhris, Imed ;
Al-Buriahi, M. S. ;
Akyildirim, Hakan ;
Alalawi, Amani ;
Kebaili, Imen ;
Sayyed, M., I .
CERAMICS INTERNATIONAL, 2020, 46 (11) :19385-19392
[7]   Chalcogenide phase-change devices for neuromorphic photonic computing [J].
Brueckerhoff-Plueckelmann, Frank ;
Feldmann, Johannes ;
Wright, C. David ;
Bhaskaran, Harish ;
Pernice, Wolfram H. P. .
JOURNAL OF APPLIED PHYSICS, 2021, 129 (15)
[8]   Chalcogenide Glass Microfibers for Mid-Infrared Optics [J].
Cai, Dawei ;
Xie, Yu ;
Guo, Xin ;
Wang, Pan ;
Tong, Limin .
PHOTONICS, 2021, 8 (11)
[9]   Chalcogenide glass ceramics: A high-performing innovative infrared acousto-optic material [J].
Cao, Zhenfei ;
Dai, Shixun ;
Ding, Shengjie ;
Wang, Min ;
Xu, Lulu ;
Liu, Chengcheng ;
Lin, Changgui .
JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2021, 41 (14) :7215-7221
[10]   Neuromorphic Photonic Memory Devices Using Ultrafast, Non-Volatile Phase-Change Materials [J].
Chen, Xiaozhang ;
Xue, Yuan ;
Sun, Yibo ;
Shen, Jiabin ;
Song, Sannian ;
Zhu, Min ;
Song, Zhitang ;
Cheng, Zengguang ;
Zhou, Peng .
ADVANCED MATERIALS, 2023, 35 (37)