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Journal of Physics D: Applied Physics, ISSN 0022-3727, 04/2016, Volume 49, Issue 20, p. 205301
Journal Article
RSC Advances, 04/2019, Volume 9, Issue 21, pp. 1167 - 11675
The thickness of a solid electrolyte influences the performance of all-solid-state batteries due to increased impedance with a thick electrolyte. Thin solid... 
Crystallization | Diamonds | Ions | Slicing | Conductors | Lithium | High temperature | Batteries | Wire | Molten salt electrolytes | Thickness | Ion diffusion | Solid state | Morphology | Tape casting | Performance enhancement | Electrolytes | Solid electrolytes | Crystal structure
Journal Article
Applied Surface Science, ISSN 0169-4332, 03/2018, Volume 434, pp. 669 - 673
•Single crystalline 128°Y-cut LiNbO3 thin films are fabricated on Si substrates by crystal-ion-slicing technique using BCB wafer bonding.•Low energy Ar+... 
BCB bonding | Ar+ irradiation | Crystal ion slicing | Single crystalline thin films | 128°Y-cut LiNbO3 | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | DEPOSITION | CHEMISTRY, PHYSICAL | WAVE-GUIDES | SUBSTRATE | GROWTH | FABRICATION | 128 degrees Y-cut LiNbO3 | LAYER | TECHNOLOGY | MATERIALS SCIENCE, COATINGS & FILMS
Journal Article
Microelectronic Engineering, ISSN 0167-9317, 05/2019, Volume 213, pp. 1 - 5
In this study, LiNbO3 (LNO) thin films prepared by crystal ion slicing (CIS) technology have been used to fabricate pyroelectric infrared detectors. Crack free... 
LiNbO3 | Pyroelectric infrared detector | Crystal ion slicing | Thermal simulation | Infrared detectors | Crystals | Gaussian distribution | Implantation | Slicing | Surface roughness | Substrates | Silicon dioxide | Thin films | Finite element method | Single crystals | Normal distribution | Mathematical analysis | Lithium niobates | Crystal structure | Technology utilization
Journal Article
Sensors and Actuators: A. Physical, ISSN 0924-4247, 12/2019, Volume 300, p. 111650
Journal Article
physica status solidi (a), ISSN 1862-6300, 10/2014, Volume 211, Issue 10, pp. 2416 - 2420
The fabrication of LiNbO3 waveguide slabs with sub‐micron thickness is presented using He ion‐induced splitting and the Cu–Sn bonding technique. The... 
crystal ion slicing | wafer bonding | lithium niobate | thin films | Thin films | Wafer bonding | Lithium niobate | Crystal ion slicing | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | MATERIALS SCIENCE, MULTIDISCIPLINARY | Annealing | Splitting | Backscattering | Waveguides | Helium | Copper | Slabs | Bonding
Journal Article
Optical Materials, ISSN 0925-3467, 05/2009, Volume 31, Issue 7, pp. 1054 - 1058
We report on sub-micrometer thick LiNbO3 films produced by an improved crystal ion slicing and bonding technique using polymer adhesive benzocyclobutene. The... 
Wafer bonding | Thin films | Integrated optics | Photonic devices | Lithium niobate | Crystal ion slicing | WAVE-GUIDES | MATERIALS SCIENCE, MULTIDISCIPLINARY | GROWTH | SILICON-ON-INSULATOR | FABRICATION | OPTICS | Dielectric films
Journal Article
Japanese Journal of Applied Physics, ISSN 0021-4922, 04/2018, Volume 57, Issue 4, p. 04FK05
Y128- and Y36-cut single-crystalline lithium niobate (LN) thin films are fabricated by the crystal-ion-slicing (CIS) technique onto LN substrates. The... 
Atomic force microscopy | Thick films | Polishing | Slicing | Surface roughness | Crystallinity | Substrates | Thin films | Single crystals | Lithium niobates | Silicon | Bonding | Crystal structure
Journal Article
Proceedings of SPIE - The International Society for Optical Engineering, ISSN 0277-786X, 2012, Volume 8261
Pyroelectric thermal detectors are excellent candidates for detection of broadband radiation. Such detectors utilize permanently poled ferroelectric single... 
lithium tantalate | thin film | terahertz | detector | ion slicing | pyroelectric | Thin films | Electric charge | Lithium tantalates | Detectors | Crystals | Charge | Slicing | Devices
Conference Proceeding
Optical Materials, ISSN 0925-3467, 11/2012, Volume 35, Issue 1, pp. 25 - 28
► We demonstrate the exfoliation of high-quality single-crystal thin-films of YAG. ► Implantation dose and thermal exfoliation conditions were determined. ►... 
Ion implantation | Thin-film | Yttrium Aluminum Garnet | Crystal Ion slicing | EPITAXIAL LIFTOFF | MATERIALS SCIENCE, MULTIDISCIPLINARY | OPTICS | LINBO3 | Rare earth metals | Thin films | Mechanical properties | Dielectric films | Ion Implantation | 75 | Crystal Ion Slicing
Journal Article
Applied Surface Science, ISSN 0169-4332, 03/2018, Volume 434, pp. 669 - 673
Single crystalline 128°Y-cut LiNbO thin films with a thickness of 670 nm are fabricated onto Si substrates by means of crystal ion slicing (CIS) technique,... 
BCB bonding | 128°Y-cut LiNbO | Single crystalline thin films | Crystal ion slicing | irradiation
Journal Article
CHEMPHYSCHEM, ISSN 1439-4235, 08/2017, Volume 18, Issue 15, pp. 1992 - 2006
Considerable interest in novel Si allotropes has led to intense investigation of tetrahedral framework structures during the last years. Recently, a guide to... 
ZINTL PHASE | CRYSTAL-STRUCTURE | PERFORMANCE | AB-INITIO | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | germanium | computational chemistry | silicon | LITHIUM ION BATTERY | GAP | tin | FRAMEWORK | ANODE | allotropy
Journal Article
Review of Scientific Instruments, ISSN 0034-6748, 02/2016, Volume 87, Issue 2, p. 02B318
Journal Article
Laser & Photonics Reviews, ISSN 1863-8880, 07/2012, Volume 6, Issue 4, pp. 488 - 503
The state‐of‐the‐art of high‐refractive‐index‐contrast single‐crystalline thin lithium niobate (LiNbO3) films as a new platform for high‐density integrated... 
crystal ion slicing | wafer bonding | Lithium niobate | waveguides | lithium niobate on insulator | integrated optics | photonic devices | thin films | Integrated optics | Thin films | Wafer bonding | Photonic devices | Waveguides | Crystal ion slicing | Lithium niobate on insulator | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | OXIDE | LINBO3 THIN-FILMS | GROWTH | FABRICATION | PHYSICS | INDEX | OPTICS | OPTICAL WAVE-GUIDE
Journal Article