Journal of the Society for Information Display

Q4 Engineering
Abhishek Kumar Srivastava
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引用次数: 0

Abstract

Following the success of Display Week 2024, the May issue (volume 32, issue 5) of the Journal of the Society for Information Displays (JSID) presents 28 expanded Distinguished Papers from the conference. The forthcoming issues of JSID will host the best of the International Display Workshops (IDW) 2023 and International Conference on Display Technology (ICDT) 2024.

July and September 2024 will feature special issues on augmented, virtual, and mixed reality (AR/VR/MR) and quantum dots (QDs) and their application in displays, respectively.

Visit the JSID website and read the latest exciting display-related research. https://sid.onlinelibrary.wiley.com/journal/19383657

The authors from the Display Research Center of Samsung Display, demonstrated an all-inkjet-printed 12.4-inch 182-ppi full-color QD-LED. They used Cd-free QDs with red and green indium phosphide (InP) and a blue zinc selenide with tellurium (ZnSeTe) core and optimal control of ink formulation. The authors found that ligands are important in ink formulation and printing. Dual ligands especially enhance colloidal stability and carrier transport properties.

An activematrix microLED display based on monolithic integration with IGZO backplane | Oliver Durnan et al. | https://doi.org/10.1002/jsid.1299

4670-PPI OLEDoS pixel circuit design for wide data voltage range in a 5 V 0.13 μm CMOS process | Hyeon-Jun Shin et al. | https://doi.org/10.1002/jsid.1280

Special Issue:

Abstract Image

信息显示学会期刊
继 "2024 年显示周 "成功举办之后,《信息显示学会期刊》(JSID)5 月刊(第 32 卷第 5 期)又推出了 28 篇会议优秀论文。即将出版的几期《JSID》将刊登2023年国际显示研讨会(IDW)和2024年国际显示技术大会(ICDT)的优秀论文。2024年7月和9月的特刊将分别介绍增强现实、虚拟现实和混合现实(AR/VR/MR)以及量子点(QDs)及其在显示器中的应用。请访问JSID网站,阅读与显示器相关的最新精彩研究成果。https://sid.onlinelibrary.wiley.com/journal/19383657The,来自三星显示器显示研究中心的作者展示了一款全喷墨打印的12.4英寸182ppi全彩QD-LED。他们使用了以红色和绿色磷化铟(InP)和蓝色硒化碲化镉锌(ZnSeTe)为核心的无镉 QD,并对油墨配方进行了优化控制。作者发现,配体在油墨配方和印刷中非常重要。双配体尤其能增强胶体稳定性和载流子传输特性。| https://doi.org/10.1002/jsid.12994670-PPI 在 5 V 0.13 μm CMOS 工艺中实现宽数据电压范围的 OLEDoS 像素电路设计 | Hyeon-Jun Shin et al.| https://doi.org/10.1002/jsid.1280Special Issue:
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来源期刊
Information Display
Information Display Engineering-Electrical and Electronic Engineering
CiteScore
1.40
自引率
0.00%
发文量
85
期刊介绍: Information Display Magazine invites other opinions on editorials or other subjects from members of the international display community. We welcome your comments and suggestions.
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