LEADER 04153nam 2200853z- 450 001 9910743279203321 005 20230911 035 $a(CKB)5690000000228515 035 $a(oapen)doab113963 035 $a(EXLCZ)995690000000228515 100 $a20230920c2023uuuu -u- - 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aOptoelectronic Materials, Devices, and Applications 210 $cMDPI - Multidisciplinary Digital Publishing Institute$d2023 215 $a1 online resource (136 p.) 311 08$a3-0365-8649-0 330 $aIn total, ten papers are included in this reprint. New advances in optoelectronic materials have been reported for crystals, electrodes, and bonding materials. Zakrzewski et al. analyzed photothermal piezoelectric spectroscopy of Cd1?xBexTe, showing potential in X-ray and ?-ray detectors. Han et al. investigated characteristics of a copper foil three-electrode planar spark gap high-voltage switch integrated with EFI. Ding et al. showed a way to improve electrochemical migration resistance of nanosilver paste as a bonding material. New advances have been reported for LEDs and photonic crystal waveguides. Bai et al. proposed a new method for the measurement of adhesive force between a single ?LED and the substrate. Zhang et al. analyzed strain relaxation effect on the peak wavelength of blue micro-LEDs. Shi et al. proposed an all-dielectric terahertz photonic crystal waveguide operating in 6G terahertz communication window. New applications of optoelectronic materials and devices have also been reported for piezoelectric sensors, crystal materials, SAR, and OCT. Wang et al. established a collision model of wheat grains impacting a force plate with a piezoelectric sensor. He et al. demonstrated application of a BaGa4Se7 crystal in a tunable and compact mid-infrared optical parametric oscillator with a repetition rate of up to 250 Hz. Wang et al. proposed a new feature learning method for the automatic target recognition of SAR images. Shi et al. reviewed the quantitative assessment methods used for early enamel caries with OCT. 606 $aHistory of engineering & technology$2bicssc 606 $aTechnology: general issues$2bicssc 610 $a3D printing 610 $aadhesive force measurement 610 $aAFM 610 $aAg nanoparticles 610 $aautomatic target recognition (ATR) 610 $aBaGa4Se7 610 $acollision model 610 $adoping 610 $adynamic characteristics 610 $aearly enamel caries 610 $aelastic characteristics 610 $aelastic recovery coefficient 610 $aelectric field strength 610 $aelectrochemical migration 610 $aimpedance characteristics 610 $aInGaN/GaN multiple quantum well (MQW) 610 $aionic migration 610 $akinematics 610 $amass transfer 610 $amicro-LED arrays 610 $amid-infrared 610 $an/a 610 $ananosilver 610 $aoptical coherence tomography 610 $aoptical parametric oscillator 610 $aphotoluminescence (PL) 610 $aphotonic crystal waveguide 610 $aphotothermal spectroscopy 610 $apooling 610 $aquantitative assessment 610 $aquantitative indicators 610 $aRaman shift 610 $areliability 610 $aresponse surface method 610 $asemiconductors 610 $asintering 610 $asparse representation 610 $aspatial pyramid matching (SPM) 610 $astatic characteristics 610 $astrain relaxation 610 $asurface defects 610 $asynthetic aperture radar (SAR) images 610 $aterahertz 610 $athree-electrode planar spark gap high voltage switch 610 $a?LED 615 7$aHistory of engineering & technology 615 7$aTechnology: general issues 906 $aBOOK 912 $a9910743279203321 996 $aOptoelectronic Materials, Devices, and Applications$93560310 997 $aUNINA