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Reader's Letter: I was told to change Southampton Civic Centre clock lights from blue to red

I was wondering why the iconic Civic Centre clock in Southampton is not lit up blue on Thursday at 8pm to clap for the NHS.




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Reader's Letter: Who is to blame for PPE shortage?

CHRISTINE Cassell (letters 28th April) asks a pertinent question when she enquires where the responsibility for the problem with PPEs for front line NHS workers lies.




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Reader's Letter: St John's Ambulance volunteers are working tirelessly

75 YEARS AGO this week St John Ambulance volunteers played a vital role delivering first aid and providing support to both the public and the armed forces on VE Day.




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Reader's Letter: Lib Dems have to accept the result of the last General Election

ONLY a delusional Lib Dem like Martin Kyrle could come up with an excuse like this about his beloved party doing well in the last election when in fact they lost over half their seats, then blaming it on our undemocratic electoral system, it’s the system we have, and our MP’s are elected on that system.




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Reader's Letter: Good Morning Britain's Piers Morgan is the antidote to ministers avoiding scrutiny

HE MAY NOT be held in the highest regard by the public but there’s something to love about Piers Morgan on Good Morning Britain.




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Reader's Letter: Our communities deserve a pat on the back for looking after each other

I say to all communities pat yourselves on the back for the great job you are doing taking care of each other and supporting each other.




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Streaming L(o)ive In The Time of COVID-19: What’s the future for DJ live streaming?

Weeks have passed, and DJs the world over have settled into the reality of sheltering in place. As efforts to combat COVID-19 push on, the masses are staying at home. Clubs have shuttered their doors, bars and restaurants are no more, and non-essential businesses are closed. But in this primetime of social distancing, there has […]

The post Streaming L(o)ive In The Time of COVID-19: What’s the future for DJ live streaming? appeared first on DJ TechTools.




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Mixcloud Launches A DJ Live Streaming Platform With Copyright Figured Out

The live streaming scene might feel crowded, but this week Mixcloud has introduced their own endeavor. They’ve launched a streaming platform built specifically for DJs, Mixcloud Live—not only taking on streaming giants like Facebook, Twitch, and Youtube, but also creating much-needed relief for DJ streams that are continually flagged for copyright. The team at Mixcloud […]

The post Mixcloud Launches A DJ Live Streaming Platform With Copyright Figured Out appeared first on DJ TechTools.




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Facebook Now Lets You Charge Entry To Livestream Events

On Facebook, live streaming just got taken things a step further: with monetization. Many suspected monetizing virtual events was coming, and it seems to be rapidly arriving on the largest social network. Facebook has come forward with new updates to assert its dominance in this COVID-19 era of online entertainment and relationships. New Facebook Tools […]

The post Facebook Now Lets You Charge Entry To Livestream Events appeared first on DJ TechTools.





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80+ DJTT Artists You Should Support Today On Bandcamp

Right now there’s a lot of uncertainty in the world – with lots of people within our industry struggling to figure out what they’re going to do next. So when Bandcamp announced their fee-free Fridays were happening again, we decided to lean in and help our own community be supported in something great: making music. […]

The post 80+ DJTT Artists You Should Support Today On Bandcamp appeared first on DJ TechTools.




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A third generation of Radius 2 + 4 rotary mixers: New tech upgrades, lower price

The UK-based mixer-maker and audiophile favorite MasterSounds has a small piece of joy to brighten up DJs’ days. They’ve released the third generation of their Radius 2 and Radius 4 mixers, and have adjusted their price points to cater to artists with a lower spending budget (especially now). These mixers are homegrown, too—MasterSounds mixers are […]

The post A third generation of Radius 2 + 4 rotary mixers: New tech upgrades, lower price appeared first on DJ TechTools.




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Traktor DJ 2.4: Transport Control UI Improvements, Genre Sorting

If you haven’t looked at Traktor DJ, Native Instruments’ iOS app (it runs on Mac and PC too) recently, a new update and the concurrent global stay-home happening seems like the perfect time to do it. The update to Traktor DJ 2.4 has a bunch of features that look like they’re straight out of a […]

The post Traktor DJ 2.4: Transport Control UI Improvements, Genre Sorting appeared first on DJ TechTools.




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Selfishness and Sacrifice After the Meltdown

The Children at Aurora Theatre Company makes us think deeply. Noble on its face for messages involving climate change and generational responsibility, excellent craft rises foremost as the walk-away reward of Aurora Theatre's new production. Written by Lucy Kirkwood and directed with signature, uncanny brilliance by Barbara Damashek, The Children employs a familiar theatrical construct to reveal the play's layered, complex story in 95 uninterrupted minutes.…




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Female is Male, and Male is Female

Ubuntu's MacBeth plays with gender in a reimagination of Shakespeare's Scottish Play First, let it be known that Director Michael Socrates Moran's Macbeth is admirable for somewhat leveling the capsized ship of employment parity in theater. By hiring three women — Emilie Whelan, Lauren Spencer and Mia Tagano — to fill the cast, the point made is that these are gifted actors, not gifted women actors.…




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Oakland Roots Ready for Home Opener on Saturday

The Town’s soccer franchise returns to the pitch this weekend with a new head coach and other fresh faces, kicking off its second season in front of Oakland's loud, loyal fans at Laney College. Last year, professional soccer planted seeds in Oakland. This year, fans hope to see them bloom into something beautiful, preferably with lots of wins on the Laney College pitch.…



  • The Oakland Zone

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Dispatches From Nowhere with Jeff Hull

The new AMC series Dispatches From Elsewhere was inspired by a massive art project created by the Oaklandish founder. Before it premiered last Sunday, months of promotional teasers for the AMC series Dispatches From Elsewhere intrigued viewers with scintillating visuals emerging from mundane settings, while only hinting at the show's quixotic premise. AMC describes its 10-hour series as the story of four people "brought together by chance — or perhaps it's by design — when they stumble onto a puzzle hiding just behind the veil of everyday life."…




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A Really Gross Problem

Plus, I have no interest in my husband now that he is smoking again. I'm a cis bi woman, and I mainly have sex with people with penises. I have a really gross problem, sorry.…




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Doing Some Binge Reading?

Buy it From Local Stores Harvard Business School professor Ryan Raffaelli describes the unique value that independent booksellers provide to local economies in this way: "It's about community, it's about curation and it's about convenience." Author of a working paper titled, "Reinventing Retail: The Novel Resurgence of Independent Bookstores," Raffaelli argues that in focusing on the "Three Cs" of community, curation, and convenience, independent booksellers have regained their footing in the face of competition from big chains and Amazon and enjoyed a resurgence in recent years.…




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For the Week of March 25, 2020

Be extra kind to kind people. ARIES (March 21-April 19): Your oracle comes from Aries poet Octavio Paz: "The path the ancestors cleared is overgrown, unused. The other path, smooth and broad, is crowded with travelers.…



  • Free Will Astrology

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MAGNETIC TUNNEL JUNCTION ENCAPSULATION USING HYDROGENATED AMORPHOUS SEMICONDUCTOR MATERIAL

Embodiments are directed to an electromagnetic memory device having a memory cell and an encapsulation layer formed over the memory cell. The memory cell may include a magnetic tunnel junction (MTJ), and the encapsulation layer may be formed from a layer of hydrogenated amorphous silicon. Amorphous silicon improves the coercivity of the MTJ but by itself is conductive. Adding hydrogen to amorphous silicon passivates dangling bonds of the amorphous silicon, thereby reducing the ability of the resulting hydrogenated amorphous silicon layer to provide a parasitic current path to the MTJ. The hydrogenated amorphous silicon layer may be formed using a plasma-enhanced chemical vapor deposition, which can be tuned to enable a hydrogen level of approximately 10 to approximately 20 percent. By keeping subsequent processing operations at or below about 400 Celsius, the resulting layer of hydrogenated amorphous silicon can maintain its hydrogen level of approximately 10 to 20 percent.




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ENHANCEMENT OF SPIN TRANSFER TORQUE MAGNETORESISTIVE RANDOM ACCESS MEMORY DEVICE USING HYDROGEN PLASMA

A method of making a MRAM device includes forming a magnetic tunnel junction on an electrode, the magnetic tunnel junction comprising a reference layer positioned in contact with the electrode, a tunnel barrier layer arranged on the reference layer, and a free layer arranged on the tunnel barrier layer; and depositing an encapsulating layer on and along sidewalls of the magnetic tunnel junction; wherein the exposing of the magnetic tunnel junction to hydrogen plasma is performed at a temperature from about 150 to about 250° C. An MRAM device including an encapsulating layer comprising either silicon nitride or aluminum oxide is also provided.




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MAGNETIC ELEMENT

A magnetic element is provided. The magnetic element includes a free magnetization layer having a surface area that is approximately 1,600 nm2 or less, the free magnetization layer including a magnetization state that is configured to be changed; an insulation layer coupled to the free magnetization layer, the insulation layer including a non-magnetic material; and a magnetization fixing layer coupled to the insulation layer opposite the free magnetization layer, the magnetization fixing layer including a fixed magnetization so as to be capable of serving as a reference of the free magnetization layer.




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SEMICONDUCTOR DEVICE AND METHOD FOR MANUFACTURING SAME

The semiconductor device according to the present invention has an upper electrode, a first lower layer wiring that also functions as a lower electrode, an electrical resistance-changing film interposed between the upper electrode and the first lower layer wiring, a second lower layer wiring, and a contact plug, the contact plug connecting to the upper electrode and to the second lower layer wiring. The present invention yields a semiconductor device with which it is possible to dispose elements in high density while maintaining the reliability and manufacturing yield of the electrical resistance-changing element.




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POLYMER, ORGANIC LIGHT-EMITTING DEVICE MATERIAL INCLUDING THE SAME, AND ORGANIC LIGHT-EMITTING DEVICE INCLUDING THE ORGANIC LIGHT-EMITTING DEVICE MATERIAL

A polymer comprising a first repeating unit represented by Formula 1: wherein, in Formula 1, groups and variables are the same as described in the specification.




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COMPOUND AND ORGANIC LIGHT-EMITTING DEVICE INCLUDING THE SAME

A compound represented by Formula 1 and an organic light-emitting device including the same are provided:




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ORGANIC LIGHT-EMITTING DIODE DISPLAY DEVICE

Disclosed is a display device having a display panel that includes a plurality of pixels in a display area, each pixel including a first thin film transistor (TFT); a plurality of pads in a non-display area outside the display area that provide operating signals to the plurality of pixels in the display area, each pad including a first signal line running toward the display area and a second signal line running toward an outer edge of the display panel, with each pad disposed between the first and second signal lines; and an extension line crossing one or more of second signal lines of the plurality of pads, two ends of the extension line running toward the outer edge of the display panel, wherein each of the one or more of second signal lines of the plurality of pads includes an active layer of a second TFT.




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POLYMER COMPOUND AND ORGANIC SEMICONDUCTOR DEVICE USING THE SAME

A polymer compound comprising a structural unit represented by the formula (1): wherein R1, R2, R3 and R4 each independently represent an alkyl group, an aryl group or a monovalent heterocyclic group, and these groups optionally have a substituent, two rings A may be the same or different, and represent a thiophene ring, a benzothiophene ring or a thienothiophene ring, n represents 1 or 2, and X represents a halogen atom, an alkyl group, an alkoxy group, an alkylthio group, an amino group, an aryl group, a monovalent heterocyclic group, an alkenyl group or an alkynyl group, and these groups optionally have a substituent, and when n is 2, two groups X may be the same or different.




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ORGANIC ELECTROLUMINESCENT COMPOUND AND ORGANIC PHOTOELECTRIC APPARATUS

The present disclosure provides a nitrogen-containing heterocyclic compound having a general formula (I) and an organic photoelectric apparatus thereof. The general formula (I) is wherein A1, A2, A3, A4, A5, A6, A7, A8, A9, and A10 are independently selected from a hydrogen atom, at least one compound having the general formula (II) and at least one compound having a general formula (III), wherein Y1, Y2, and Y3 are independently selected from C and N; and R3 and R4 are independently selected from C6-30 aromatic group and C2-30 heterocyclic aromatic group, wherein X is selected from oxyl group, sulfenyl group, substituted or non-substituted imino group, substituted or non-substituted methylene group, and substituted or non-substituted silicylene group, and R5, R6, R7, R8, R9, R10, R11, and R12 are independently selected from hydrogen, deuterium, C1-30 alkyl group, C6-30 aromatic group, and C2-30 heterocyclic aromatic group.




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ORGANIC ELECTROLUMINESCENT COMPOUND AND ORGANIC PHOTOELECTRIC APPARATUS THEREOF

The present disclosure provides a nitrogen-containing heterocyclic compound having general formula (I) and an organic photoelectric apparatus thereof. where A1, A2, A3, A4, A5, A6, A7, and A8 are independently selected from a hydrogen atom, at least one compound having the general formula (II) and at least one compound having the general formula (III), where Y1, Y2, and Y3 are independently selected from C and N; R3 and R4 are independently selected from C6-30 aromatic group and C2-30 heterocyclic aromatic group, wherein X is selected from any one of oxyl group (—O—), sulfhydryl group (—S—), substituted or non-substituted imino group, substituted or non-substituted methylene group, and substituted or non-substituted silicylene group; R5, R6, R7, R8, R9, R10, R11, and R12 are independently selected from hydrogen, deuterium, C1-30 alkyl group, C6-30 aromatic group, or C2-30 heterocyclic aromatic group.




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ORGANIC LIGHT-EMITTING DEVICE

According to one or more embodiments, an organic light-emitting device includes: a first electrode; a second electrode facing the first electrode; and an organic layer between the first electrode and the second electrode, the organic layer including an emission layer, wherein the organic layer may include a first compound represented by one selected from Formulae 1-1 and 1-2, and a second compound represented by Formula 2:




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HETEROCYCLIC COMPOUND AND ORGANIC LIGHT EMITTING DEVICE COMPRISING SAME

The present specification provides a hetero-cyclic compound and an organic light emitting device including the hetero-cyclic compound.




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PYRIMIDINE DERIVATIVE AND AN ORGANIC ELECTROLUMINESCENT DEVICE

According to the present invention, there are provided a pyrimidine derivative represented by a general formula (1) indicated below, and an organic electroluminescent device comprising a pair of electrodes, and at least one organic layer sandwiched therebetween, wherein the pyrimidine derivative is used as a constituent material for the at least one organic layer. The pyrimidine derivative of the present invention is a material for a high efficiency, high durability organic electroluminescent device, is excellent in electron injection/transport performance, has hole blocking capability, and excels in characteristics.




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NOVEL COMPOUND

A compound represented by the following formula (1):




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ORGANIC LIGHT-EMITTING DEVICE

According to one or more embodiments, an organic light-emitting device includes: a first electrode; a second electrode; and an organic layer between the first electrode and the second electrode, the organic layer including an emission layer. The organic layer includes a first compound represented by Formula 1 and a second compound represented by one selected from Formulae 2-1 to 2-3:




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Organic Electroluminescent Materials and Devices

Host materials with pentafluorophenyl substitution are described. These compounds are designed for, and used for hosting aza substituted dopants that may be susceptible to intramolecular deprotonation. In addition, the fluorinated substitution aids with electron transport within the emissive layer.




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Compound, Light-Emitting Element, Display Device, Electronic Device, and Lighting Device

A compound includes a benzofuropyrimidine skeleton or a benzothienopyrimidine skeleton, a first substituent, and a second substituent. Each of the first substituent and the second substituent includes a furan skeleton, a thiophene skeleton, or a pyrrole skeleton. The first substituent is bonded to a pyrimidine ring included in the benzofuropyrimidine skeleton or a pyrimidine ring included in the benzothienopyrimidine skeleton. The second substituent is bonded to a benzene ring included in the benzofuropyrimidine skeleton or a benzene ring included in the benzothienopyrimidine skeleton. The light-emitting element includes the compound.




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ORGANIC ELECTROLUMINESCENT COMPOUND AND ORGANIC PHOTOELECTRIC APPARATUS THEREOF

The present disclosure provides a nitrogen-containing heterocyclic compound having a general formula (I) and an organic photoelectric apparatus thereof. The compound of general formula (I) is: wherein A1, A2, A3, and A4 are independently selected from a hydrogen atom, a function group having a general formula (II); A1, A2, A3, and A4 include at least one function group having the general formula (II); R1 and R2 are independently selected from one of hydrogen, deuterium, C1-30 alkyl group, C6-30 aromatic group and C2-30 heterocyclic aromatic group; Y1 and Y2 are independently selected from substituted or non-substituted C and N,the general formula (II) being: wherein X is selected from one of oxyl group (—O—), sulfhydryl group (—S—), substituted or non-substituted imino group, substituted or non-substituted methylene group, and substituted or non-substituted silicylene group; and R3, R4, R5, R6, R7, R8, R9, and R10 are independently selected from one of hydrogen, deuterium, C1-30 alkyl group, C6-30 aromatic group, and C2-30 heterocyclic aromatic group.




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ORGANIC ELECTROLUMINESCENT COMPOUND AND ORGANIC PHOTOELECTRIC APPARATUS THEREOF

The present disclosure provides a nitrogen-containing heterocyclic compound having a general formula (I) and an organic photoelectric apparatus thereof. The general formula (I) is: wherein A1, A2, A3, A4, A5, A6, A7, A8, A9, and A10 are independently selected from a hydrogen atom, a nitrile group and a function group having a general formula (II), and A1, A2, A3, A4, A5, A6, A7, A8, A9, and A10 include at least one nitrile group and at least one function group having the general formula (II),the general formula (II) being: wherein R1, R2, R3, R4, R5, R6, R7, and R8 are independently selected from hydrogen atoms, deuterium atoms, C6-30 aromatic group and C2-30 heterocyclic aromatic group.




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CONDENSED CYCLIC COMPOUND AND ORGANIC LIGHT-EMITTING DEVICE INCLUDING THE SAME

A condensed cyclic compound represented by Formula 1: Ar1-L1-L2-Ar2 Formula 1 wherein in Formula 1, Ar1, Ar2, L1, and L2 are the same as described in the specification.




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ORGANIC LIGHT-EMITTING DEVICE

An organic light-emitting device includes: a first electrode; a second electrode; and an organic layer between the first electrode and the second electrode, the organic layer including an emission layer, wherein the organic layer includes a first compound represented by Formula 1 and a second compound represented by Formula 2, wherein a case where the first compound is 4,4'-bis(N-carbazolyl)-1,1'-biphenyl(CBP) is excluded:




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Organic Electroluminescent Materials and Devices

Compounds containing indolocathazole, and aromatic and/or heteroaromatic building blocks, are disclosed in this application. These compounds are useful for application in organic electroluminescent devices.




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ORGANIC LIGHT-EMITTING DEVICE

An organic light-emitting device includes: a first electrode; a second electrode; and an organic layer between the first electrode and the second electrode, the organic layer including an emission layer, wherein the organic layer includes a first compound represented by one selected from Formulae 1-1 and 1-2 and a second compound represented by one selected from Formulae 2-1 to 2-3.




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COMPOUND AND ORGANIC LIGHT-EMITTING DEVICE INCLUDING THE SAME

A compound is represented by Formula 1 and an organic light-emitting device including the same: wherein Formula 1 is the same as described above.




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Light-Emitting Element, Display Device, Electronic Device, and Lighting Device

A light-emitting element with high emission efficiency and high reliability is provided. The light-emitting element includes a light-emitting layer containing a first organic compound, a second organic compound, and a guest material. The first organic compound has a nitrogen-containing six-membered heteroaromatic skeleton. In the light-emitting layer, the weight ratio of an organic compound having a nitrogen-containing five-membered heterocyclic skeleton with an NH group, a secondary amine skeleton with an NH group, or a primary amine skeleton with an NH group to the first organic compound is less than or equal to 0.03, or alternatively, the weight ratio of the organic compound having a nitrogen-containing five-membered heterocyclic skeleton with an NH group, a secondary amine skeleton with an NH group, or a primary amine skeleton with an NH group to the second organic compound is less than or equal to 0.01.




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ORGANIC LIGHT-EMITTING DEVICE

An organic light-emitting device includes a first electrode, a second electrode facing the first electrode, and an emission layer disposed between the first electrode and the second electrode. An electron transport region is between the second electrode and the emission layer. The electron transport region includes an electron injection layer including a first component including at least one halide of an alkali metal (Group I), a second component including at least one organometallic compound, and a third component including at least one of a lanthanide metal or an alkaline earth metal (Group II).




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DISPLAY MODULE

A display module includes an insulating substrate and a plurality of pixels each located on the insulating substrate and including a light-emitting element layer. The insulating substrate includes a display area where the plurality of pixels are disposed, a picture-frame area outside the display area, an outer area that is in contact with an opposite side of the picture-frame area from the display area, and a plurality of terminals located on the outer area and arranged in a direction. The outer area includes a narrowed portion whose length in the direction is shorter than a length of the display area in the direction.




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ORGANIC LIGHT EMITTING DIODE AND ORGANIC LIGHT EMITTING DIODE DISPLAY DEVICE INCLUDING THE SAME

An organic light emitting element includes a first electrode a second electrode that faces the first electrode, an emission layer between the first electrode and the second electrode, the emission layer including quantum dots, and a hole transport layer between the first electrode and the emission layer. The quantum dots include at least one of a Group I-VI compound, a Group II-VI compound, and a Group III-VI compound. The hole transport layer includes at least one of a p-doped Group I-VI compound, a p-doped Group II-VI compound, and a p-doped Group III-VI compound.




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ELECTROLUMINESCENT DIODE HAVING DELAYED FLORESCENCE QUANTUM DOT

The present invention relates to a delayed fluorescence-quantum dot (QD) electroluminescent diode, the delayed fluorescence-quantum dot electroluminescent diode includes an anode, a cathode, and a light emitting layer located between the anode and the cathode, and the light emitting layer includes a QD and a delayed fluorescence material which supplies energy to the QD.




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ORGANIC LIGHT EMITTING DISPLAY DEVICE AND METHOD OF MANUFACTURING THE SAME

An organic light emitting display (OLED) device can include a substrate on which first to third light emitting portions are defined, first electrodes respectively positioned on the first to third light emitting portions, a first stack formed on the first electrodes and including first, second and third light emitting layers corresponding to the first, second and third light emitting portions, respectively, an N-type charge generation layer (CGL) positioned on the first stack, a transition metal oxide layer positioned on the N-type CGL, a second stack positioned on the transition metal oxide layer and including fourth, fifth and sixth light emitting layers corresponding to the first, second and third light emitting portions, respectively, and a second electrode positioned on the second stack.