Journal articles on the topic 'Epitaxie van der Waals'
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Mulder, Liesbeth, Daan H. Wielens, Yorick A. Birkhölzer, Alexander Brinkman, and Omar Concepción. "Revisiting the van der Waals Epitaxy in the Case of (Bi0.4Sb0.6)2Te3 Thin Films on Dissimilar Substrates." Nanomaterials 12, no. 11 (May 24, 2022): 1790. http://dx.doi.org/10.3390/nano12111790.
Full textYe, Lianxu, Di Zhang, Juanjuan Lu, Sicheng Xu, Ruixing Xu, Jiyu Fan, Rujun Tang, et al. "Epitaxial (110)-oriented La0.7Sr0.3MnO3 film directly on flexible mica substrate." Journal of Physics D: Applied Physics 55, no. 22 (March 4, 2022): 224002. http://dx.doi.org/10.1088/1361-6463/ac570d.
Full textChen, Hou-Guang, Yung-Hui Shih, Huei-Sen Wang, Sheng-Rui Jian, Tzu-Yi Yang, and Shu-Chien Chuang. "Van der Waals Epitaxial Growth of ZnO Films on Mica Substrates in Low-Temperature Aqueous Solution." Coatings 12, no. 5 (May 20, 2022): 706. http://dx.doi.org/10.3390/coatings12050706.
Full textRen, Fang, Bingyao Liu, Zhaolong Chen, Yue Yin, Jingyu Sun, Shuo Zhang, Bei Jiang, et al. "Van der Waals epitaxy of nearly single-crystalline nitride films on amorphous graphene-glass wafer." Science Advances 7, no. 31 (July 2021): eabf5011. http://dx.doi.org/10.1126/sciadv.abf5011.
Full textWang, S. F., W. K. Fong, W. Wang, K. K. Leung, and C. Surya. "Growth of SnS van der Waals Epitaxies on Layered Substrates." MRS Proceedings 1493 (2013): 213–17. http://dx.doi.org/10.1557/opl.2013.234.
Full textRyu, Huije, Hyunik Park, Joung-Hun Kim, Fan Ren, Jihyun Kim, Gwan-Hyoung Lee, and Stephen J. Pearton. "Two-dimensional material templates for van der Waals epitaxy, remote epitaxy, and intercalation growth." Applied Physics Reviews 9, no. 3 (September 2022): 031305. http://dx.doi.org/10.1063/5.0090373.
Full textUeno, Tetsuji, Hideki Yamamoto, Koichiro Saiki, and Atsushi Koma. "Van der Waals epitaxy of metal dihalide." Applied Surface Science 113-114 (April 1997): 33–37. http://dx.doi.org/10.1016/s0169-4332(96)00770-2.
Full textLang, O., A. Klein, R. Schlaf, T. Löher, C. Pettenkofer, W. Jaegermann, and A. Chevy. "heterointerfaces prepared by Van der Waals epitaxy." Journal of Crystal Growth 146, no. 1-4 (January 1995): 439–43. http://dx.doi.org/10.1016/0022-0248(94)00504-4.
Full textChang, Po-Han, Chia-Shuo Li, Fang-Yu Fu, Kuo-You Huang, Ang-Sheng Chou, and Chih-I. Wu. "Van Der Waals Epitaxy: Ultrasensitive Photoresponsive Devices Based on Graphene/BiI3 van der Waals Epitaxial Heterostructures (Adv. Funct. Mater. 23/2018)." Advanced Functional Materials 28, no. 23 (June 2018): 1870160. http://dx.doi.org/10.1002/adfm.201870160.
Full textLi, Xufan, Ming-Wei Lin, Junhao Lin, Bing Huang, Alexander A. Puretzky, Cheng Ma, Kai Wang, et al. "Two-dimensional GaSe/MoSe2misfit bilayer heterojunctions by van der Waals epitaxy." Science Advances 2, no. 4 (April 2016): e1501882. http://dx.doi.org/10.1126/sciadv.1501882.
Full textWang, Shifeng, Yong Li, Annie Ng, Qing Hu, Qianyu Zhou, Xin Li, and Hao Liu. "2D Bi2Se3 van der Waals Epitaxy on Mica for Optoelectronics Applications." Nanomaterials 10, no. 9 (August 22, 2020): 1653. http://dx.doi.org/10.3390/nano10091653.
Full textKoma, Atsushi, and Kazuki Yoshimura. "Ultrasharp interfaces grown with Van Der Waals epitaxy." Surface Science Letters 174, no. 1-3 (August 1986): A459. http://dx.doi.org/10.1016/0167-2584(86)90098-8.
Full textKoma, Atsushi, and Kazuki Yoshimura. "Ultrasharp interfaces grown with Van der Waals epitaxy." Surface Science 174, no. 1-3 (August 1986): 556–60. http://dx.doi.org/10.1016/0039-6028(86)90471-1.
Full textGuo, Lu’an, Yitao Wang, Dogan Kaya, Richard E. Palmer, Guangde Chen, and Quanmin Guo. "Orientational Epitaxy of van der Waals Molecular Heterostructures." Nano Letters 18, no. 8 (July 12, 2018): 5257–61. http://dx.doi.org/10.1021/acs.nanolett.8b02238.
Full textNakayama, Yasuo, Ryohei Tsuruta, and Tomoyuki Koganezawa. "‘Molecular Beam Epitaxy’ on Organic Semiconductor Single Crystals: Characterization of Well-Defined Molecular Interfaces by Synchrotron Radiation X-ray Diffraction Techniques." Materials 15, no. 20 (October 13, 2022): 7119. http://dx.doi.org/10.3390/ma15207119.
Full textVermeulen, Paul Alexander, Jamo Momand, and Bart Jan Kooi. "Low temperature epitaxy of tungsten–telluride heterostructure films." CrystEngComm 21, no. 22 (2019): 3409–14. http://dx.doi.org/10.1039/c9ce00338j.
Full textBaboli, Mohadeseh A., Michael A. Slocum, Hyun Kum, Thomas S. Wilhelm, Stephen J. Polly, Seth M. Hubbard, and Parsian K. Mohseni. "Improving pseudo-van der Waals epitaxy of self-assembled InAs nanowires on graphene via MOCVD parameter space mapping." CrystEngComm 21, no. 4 (2019): 602–15. http://dx.doi.org/10.1039/c8ce01666f.
Full textPark, Jeong-Hwan, Xu Yang, Jun-Yeob Lee, Mun-Do Park, Si-Young Bae, Markus Pristovsek, Hiroshi Amano, and Dong-Seon Lee. "The stability of graphene and boron nitride for III-nitride epitaxy and post-growth exfoliation." Chemical Science 12, no. 22 (2021): 7713–19. http://dx.doi.org/10.1039/d1sc01642c.
Full textTiefenbacher, S., H. Sehnert, C. Pettenkofer, and W. Jaegermann. "Epitaxial films of WS2 by metal organic van der Waals epitaxy (MO-VDWE)." Surface Science 318, no. 1-2 (October 1994): L1161—L1164. http://dx.doi.org/10.1016/0039-6028(94)90331-x.
Full textAretouli, Kleopatra Emmanouil, Dimitra Tsoutsou, Polychronis Tsipas, Jose Marquez-Velasco, Sigiava Aminalragia Giamini, Nicolaos Kelaidis, Vassilis Psycharis, and Athanasios Dimoulas. "Epitaxial 2D SnSe2/ 2D WSe2 van der Waals Heterostructures." ACS Applied Materials & Interfaces 8, no. 35 (August 25, 2016): 23222–29. http://dx.doi.org/10.1021/acsami.6b02933.
Full textViswanathan, Ravi. "Strained-layer Van Der Waals epitaxy in a Langmuir-Blodgett film." Proceedings, annual meeting, Electron Microscopy Society of America 51 (August 1, 1993): 514–15. http://dx.doi.org/10.1017/s042482010014840x.
Full textLittlejohn, A. J., Y. Xiang, E. Rauch, T. M. Lu, and G. C. Wang. "van der Waals epitaxy of Ge films on mica." Journal of Applied Physics 122, no. 18 (November 14, 2017): 185305. http://dx.doi.org/10.1063/1.5000502.
Full textKoma, Atsushi. "Van der Waals epitaxy for highly lattice-mismatched systems." Journal of Crystal Growth 201-202 (May 1999): 236–41. http://dx.doi.org/10.1016/s0022-0248(98)01329-3.
Full textWalsh, Lee A., and Christopher L. Hinkle. "van der Waals epitaxy: 2D materials and topological insulators." Applied Materials Today 9 (December 2017): 504–15. http://dx.doi.org/10.1016/j.apmt.2017.09.010.
Full textChen, Qi, Yue Yin, Fang Ren, Meng Liang, Xiaoyan Yi, and Zhiqiang Liu. "Van der Waals Epitaxy of III-Nitrides and Its Applications." Materials 13, no. 17 (August 31, 2020): 3835. http://dx.doi.org/10.3390/ma13173835.
Full textNapoleonov, B., D. Petrova, P. Rafailov, V. Videva, V. Strijkova, D. Karashanova, D. Dimitrov, and V. Marinova. "Growth of 2D MoS2 on sapphire and mica." Journal of Physics: Conference Series 2710, no. 1 (February 1, 2024): 012016. http://dx.doi.org/10.1088/1742-6596/2710/1/012016.
Full textBennett-Jackson, Andrew L., Matthias Falmbigl, Kanit Hantanasirisakul, Zongquan Gu, Dominic Imbrenda, Aleksandr V. Plokhikh, Alexandria Will-Cole, et al. "van der Waals epitaxy of highly (111)-oriented BaTiO3 on MXene." Nanoscale 11, no. 2 (2019): 622–30. http://dx.doi.org/10.1039/c8nr07140c.
Full textBolognesi, Margherita, Marco Brucale, Andrea Lorenzoni, Federico Prescimone, Salvatore Moschetto, Vladimir V. Korolkov, Matteo Baldoni, et al. "Epitaxial multilayers of alkanes on two-dimensional black phosphorus as passivating and electrically insulating nanostructures." Nanoscale 11, no. 37 (2019): 17252–61. http://dx.doi.org/10.1039/c9nr01155b.
Full textYin, Yue, Fang Ren, Yunyu Wang, Zhiqiang Liu, Jinping Ao, Meng Liang, Tongbo Wei, et al. "Direct van der Waals Epitaxy of Crack-Free AlN Thin Film on Epitaxial WS2." Materials 11, no. 12 (December 4, 2018): 2464. http://dx.doi.org/10.3390/ma11122464.
Full textFelix, Jorlandio Francisco, Arlon Fernandes da Silva, Sebastião Willam da Silva, Fanyao Qu, Bin Qiu, Junfeng Ren, Walter Mendes de Azevedo, Mohamed Henini, and Chung-Che Huang. "A comprehensive study on the effects of gamma radiation on the physical properties of a two-dimensional WS2 monolayer semiconductor." Nanoscale Horizons 5, no. 2 (2020): 259–67. http://dx.doi.org/10.1039/c9nh00414a.
Full textSusanto, Iwan, Chi-Yu Tsai, Yen-Teng Ho, Ping-Yu Tsai, and Ing-Song Yu. "Temperature Effect of van der Waals Epitaxial GaN Films on Pulse-Laser-Deposited 2D MoS2 Layer." Nanomaterials 11, no. 6 (May 26, 2021): 1406. http://dx.doi.org/10.3390/nano11061406.
Full textMichałowski, Paweł Piotr, Piotr Caban, and Jacek Baranowski. "Secondary ion mass spectrometry investigation of carbon grain formation in boron nitride epitaxial layers with atomic depth resolution." Journal of Analytical Atomic Spectrometry 34, no. 5 (2019): 848–53. http://dx.doi.org/10.1039/c9ja00004f.
Full textSun, Xin, Zonghuan Lu, Zhizhong Chen, Yiping Wang, Jian Shi, Morris Washington, and Toh-Ming Lu. "Single-Crystal Graphene-Directed van der Waals Epitaxial Resistive Switching." ACS Applied Materials & Interfaces 10, no. 7 (February 7, 2018): 6730–36. http://dx.doi.org/10.1021/acsami.7b18385.
Full textSusanto, Iwan, Hong-Shan Liu, Yen-Ten Ho, and Ing-Song Yu. "Epitaxial Growth of GaN Films on Chemical-Vapor-Deposited 2D MoS2 Layers by Plasma-Assisted Molecular Beam Epitaxy." Nanomaterials 14, no. 8 (April 22, 2024): 732. http://dx.doi.org/10.3390/nano14080732.
Full textMa, Shuo, Wenwu Pan, Xiao Sun, Zekai Zhang, Renjie Gu, Lorenzo Faraone, and Wen Lei. "Growth of Hg0.7Cd0.3Te on Van Der Waals Mica Substrates via Molecular Beam Epitaxy." Molecules 29, no. 16 (August 21, 2024): 3947. http://dx.doi.org/10.3390/molecules29163947.
Full textJing, Yumei, Shaoyun Huang, Kai Zhang, Jinxiong Wu, Yunfan Guo, Hailin Peng, Zhongfan Liu, and H. Q. Xu. "Weak antilocalization and electron–electron interaction in coupled multiple-channel transport in a Bi2Se3 thin film." Nanoscale 8, no. 4 (2016): 1879–85. http://dx.doi.org/10.1039/c5nr07296d.
Full textZhao, Chunsong, Humberto Batiz, Bengisu Yasar, Wenbo Ji, Mary C. Scott, Daryl C. Chrzan, and Ali Javey. "Orientated Growth of Ultrathin Tellurium by van der Waals Epitaxy." Advanced Materials Interfaces 9, no. 5 (January 7, 2022): 2101540. http://dx.doi.org/10.1002/admi.202101540.
Full textMohanty, Dibyajyoti, Weiyu Xie, Yiping Wang, Zonghuan Lu, Jian Shi, Shengbai Zhang, Gwo-Ching Wang, Toh-Ming Lu, and Ishwara B. Bhat. "van der Waals epitaxy of CdTe thin film on graphene." Applied Physics Letters 109, no. 14 (October 3, 2016): 143109. http://dx.doi.org/10.1063/1.4964127.
Full textDau, M. T., C. Vergnaud, M. Gay, C. J. Alvarez, A. Marty, C. Beigné, D. Jalabert, et al. "van der Waals epitaxy of Mn-doped MoSe2 on mica." APL Materials 7, no. 5 (May 2019): 051111. http://dx.doi.org/10.1063/1.5093384.
Full textDesrat, W., M. Moret, O. Briot, T.-H. Ngo, B. A. Piot, B. Jabakhanji, and B. Gil. "Superconducting Ga/GaSe layers grown by van der Waals epitaxy." Materials Research Express 5, no. 4 (April 11, 2018): 045901. http://dx.doi.org/10.1088/2053-1591/aab8c5.
Full textSaiki, Koichiro, Keiji Ueno, Toshihiro Shimada, and Atsushi Koma. "Application of Van der Waals epitaxy to highly heterogeneous systems." Journal of Crystal Growth 95, no. 1-4 (February 1989): 603–6. http://dx.doi.org/10.1016/0022-0248(89)90475-2.
Full textSchlaf, R., S. Tiefenbacher, O. Lang, C. Pettenkofer, and W. Jaegermann. "Van der Waals epitaxy of thin InSe films on MoTe2." Surface Science 303, no. 1-2 (February 1994): L343—L347. http://dx.doi.org/10.1016/0039-6028(94)90610-6.
Full textZhu, Yue, Yong Zhou, Muhammad Iqbal Bakti Utama, María de la Mata, Yanyuan Zhao, Qing Zhang, Bo Peng, Cesar Magen, Jordi Arbiol, and Qihua Xiong. "Solution phase van der Waals epitaxy of ZnO wire arrays." Nanoscale 5, no. 16 (2013): 7242. http://dx.doi.org/10.1039/c3nr01984e.
Full textOhuchi, F. S., T. Shimada, B. A. Parkinson, K. Ueno, and A. Koma. "Growth of MoSe2 thin films with Van der Waals epitaxy." Journal of Crystal Growth 111, no. 1-4 (May 1991): 1033–37. http://dx.doi.org/10.1016/0022-0248(91)91127-v.
Full textHashimoto, Akihiro, Kohsuke Iwao, Satoru Tanaka, and Akio Yamamoto. "van der Waals epitaxy of solid C60 on graphene sheet." Diamond and Related Materials 17, no. 7-10 (July 2008): 1622–24. http://dx.doi.org/10.1016/j.diamond.2008.03.011.
Full textSaito, Yuta, Paul Fons, Alexander V. Kolobov, and Junji Tominaga. "Self‐organized van der Waals epitaxy of layered chalcogenide structures." physica status solidi (b) 252, no. 10 (August 11, 2015): 2151–58. http://dx.doi.org/10.1002/pssb.201552335.
Full textZhao, Mei, Manman Liu, Youqing Dong, Chao Zou, Keqin Yang, Yun Yang, Lijie Zhang, and Shaoming Huang. "Epitaxial growth of two-dimensional SnSe2/MoS2 misfit heterostructures." Journal of Materials Chemistry C 4, no. 43 (2016): 10215–22. http://dx.doi.org/10.1039/c6tc03406c.
Full textBedoya-Pinto, Amilcar, Jing-Rong Ji, Avanindra K. Pandeya, Pierluigi Gargiani, Manuel Valvidares, Paolo Sessi, James M. Taylor, Florin Radu, Kai Chang, and Stuart S. P. Parkin. "Intrinsic 2D-XY ferromagnetism in a van der Waals monolayer." Science 374, no. 6567 (October 29, 2021): 616–20. http://dx.doi.org/10.1126/science.abd5146.
Full textChen, Weijong, Zeyuan Sun, Zhongjie Wang, Lehua Gu, Xiaodong Xu, Shiwei Wu, and Chunlei Gao. "Direct observation of van der Waals stacking–dependent interlayer magnetism." Science 366, no. 6468 (November 21, 2019): 983–87. http://dx.doi.org/10.1126/science.aav1937.
Full textMin, Jung-Hong, Kuang-Hui Li, Yong-Hyeon Kim, Jung-Wook Min, Chun Hong Kang, Kyoung-Ho Kim, Jae-Seong Lee, et al. "Toward Large-Scale Ga2O3 Membranes via Quasi-Van Der Waals Epitaxy on Epitaxial Graphene Layers." ACS Applied Materials & Interfaces 13, no. 11 (March 12, 2021): 13410–18. http://dx.doi.org/10.1021/acsami.1c01042.
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