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JournalISSN: 1229-7607

Transactions on Electrical and Electronic Materials 

Springer Science+Business Media
About: Transactions on Electrical and Electronic Materials is an academic journal published by Springer Science+Business Media. The journal publishes majorly in the area(s): Thin film & Dielectric. It has an ISSN identifier of 1229-7607. Over the lifetime, 1327 publications have been published receiving 6129 citations. The journal is also known as: TEEM & Trans. E E M.


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Journal ArticleDOI
TL;DR: In this article, the authors introduce the basic operating principles of focusing liquid crystal (LC) lenses and discuss the structures of LC lenses, and major challenges of LC lens are also discussed.
Abstract: Electrically tunable focusing liquid crystal (LC) lenses are reviewed in this paper. The distribution of the orientations of LC directors which is controlled by electric fields results in a distribution of refractive indices of LC directors. The incident light can be modulated by the electrically tunable lens-like phase difference of the LC lens. We introduce the basic operating principles of LC lenses and discuss the structures of LC lenses. The major challenges of LC lenses are also discussed. We believe this paper provides a guideline for basic understanding of LC lenses.

132 citations

Journal ArticleDOI
TL;DR: In this paper, several equivalent circuit models of representative significance are explained, and their respective advantages and disadvantages are compared to determine and outline their reasonable applications to Li-ion batteries, and basic model verification methods are briefly introduced for the convenient use of such models.
Abstract: Batteries are critical components of electric vehicles and energy storage systems. The connection of a battery to the power grid for charge and discharge greatly affects energy storage. Therefore, an accurate and easy-to-observe battery model should be established to achieve systematic design, simulation, and SOC (state of charge) estimations. In this review, several equivalent circuit models of representative significance are explained, and their respective advantages and disadvantages are compared to determine and outline their reasonable applications to Li-ion batteries. Numerous commonly used model parameter identification principles are summarized as well, and basic model verification methods are briefly introduced for the convenient use of such models.

68 citations

Journal ArticleDOI
TL;DR: In this paper, the effects of the growth temperature on the properties of ZnO thin films were investigated by using X-ray diffraction, scanning electron microscopy, ultraviolet-visible spectrophotometry, and Hall measurements.
Abstract: (Received October 14 2009, Revised November 30 2009, Accepted December 15 2009) The effects of the growth temperature on the properties of ZnO thin films were investigated by using X-ray diffraction, scanning electron microscopy, ultraviolet-visible spectrophotometry, and Hall measurements. The ZnO films were deposited by rf magnetron sputtering at various growth temperatures in the range of 100-400

64 citations

Journal ArticleDOI
TL;DR: The effect of Ta substitution on the crystal structure, ferroelectric and piezoelectric properties of ceramics has been investigated in this article, where the Ta doping resulted in a transition from coexistence of tetragonal and rhombohedral phases to an electrostrictive pseudocubic phase.
Abstract: The effect of Ta substitution on the crystal structure, ferroelectric, and piezoelectric properties of ceramics has been investigated. The Ta doping resulted in a transition from coexistence of ferroelectric tetragonal and rhombohedral phases to an electrostrictive pseudocubic phase, leading to degradations of the remnant polarization, coercive field, and piezoelectric coefficient . However, the electricfield-induced strain was significantly enhanced by the Ta substitution-induced phase transition and reached a highest value of

63 citations

Performance
Metrics
No. of papers from the Journal in previous years
YearPapers
202331
202251
2021144
202073
201972
201871