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公开(公告)号:JP6976012B2
公开(公告)日:2021-12-01
申请号:JP2020547072
申请日:2019-01-25
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公开(公告)号:JP2021515411A
公开(公告)日:2021-06-17
申请号:JP2020547072
申请日:2019-01-25
Abstract: n-型Mg-Sb基室温熱電材料であって、化学一般式はMg 3+δ Mn x Sb 2-y-z Bi y A z であり、Aは酸素族元素S、Se又はTe、−0.2≦δ≦0.3であり、x、y、zは原子比率で、x=0.001〜0.4、y=0〜1.0、z=0〜0.2である。化学一般式に従う純度≧99%の単体材料を原料とし、それぞれアルゴン雰囲気でバッチ計量し、且つボールミルにステンレス製の小球を加え、ボールミルを高速回転させて粉体を得る。粉体をそれぞれ秤量して黒鉛金型に詰め、金型を高温炉に入れて真空にして、総気圧4Pa未満で焼結し、焼結終了後室温まで冷却する。熱電材料の室温熱電性能指数及び力学性能は伝統的なn-型テルル化ビスマスのレベルより明らかに優れ、且つコストが安く、製造方法が簡単で、制御性が強く、再現性が良い。
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公开(公告)号:JP2020531866A
公开(公告)日:2020-11-05
申请号:JP2020531808
申请日:2019-01-25
Inventor: リィウ ウェイシュ , ヂャン シュゥァンモン , フー ジーヂェン , ヂャン ポンシァン , リィゥ ヨン
Abstract: 温度検知ベースの可撓性電子皮膚は、温度検知ユニット(10)と、温度検知ユニット(10)に設けられる熱伝導ユニット(20)と、温度検知ユニット(10)及び熱伝導ユニット(20)を一体的にパッケージしたパッケージ層(30)とを備えている。温度検知ユニット(10)は、可撓性基板(11)と、下から上へ順次可撓性基板(11)に堆積された、絶縁層(12)、遷移層(13)、複数の薄膜熱電スタック(14)、及び、断熱保護層(15)とを含む。熱伝導ユニット(20)は、それぞれ薄膜熱電スタック(14)の熱伝導エリア(141)に固定されており、断熱保護層(15)及びパッケージ層(30)外に延びた複数の熱伝導ファイバ(21)を含む。ファイバ温度検知ベースの可撓性電子皮膚及びその製造方法である。
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公开(公告)号:JP6802597B2
公开(公告)日:2020-12-16
申请号:JP2020531808
申请日:2019-01-25
Inventor: リィウ ウェイシュ , ヂャン シュゥァンモン , フー ジーヂェン , ヂャン ポンシァン , リィゥ ヨン
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公开(公告)号:WO2021000330A1
公开(公告)日:2021-01-07
申请号:PCT/CN2019/094735
申请日:2019-07-04
Inventor: WONG, Keith, Man Chung
Abstract: A series of highly luminescent cyclometalated rhodium (III) complexes, with photoluminescence quantum yields up to 0.65 in thin films, have been designed and prepared. The strong luminescence property is realized by the judicious choice of a strong σ-donor cyclometalating ligand with lower-lying intraligand state and the ability to raise the d-d excited state. This is the first report to demonstrate the capability of rhodium(III) complexes as high efficient light-emitting materials for organic light-emitting devices. Compelling external quantum efficiencies of up to 12.2%and operational half-lifetime of over 3, 000 hours have been achieved.
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公开(公告)号:WO2018133053A1
公开(公告)日:2018-07-26
申请号:PCT/CN2017/071999
申请日:2017-01-21
Inventor: CHENG, Chun , CHANDRASHEKAR, Bananakere Nanjegowda , WANG, Jingwei , SHI, Run , ZHANG, Linfei , LIU, Shiyuan , OUYANG, Wenkai , ZHANG, Yi , KONG, Weiguang , HU, Manman
IPC: C01B32/194 , C01B32/184 , C01B32/182 , C01B32/186
CPC classification number: C01B32/194 , C01B32/186
Abstract: A method for transferring graphene, comprising the step of: forming CVD-grown graphene on copper substrate; transferring the CVD-grown graphene from copper substrate to a target substrate by: depositing a thin film on the CVD-grown graphene to form a thin film-graphene and binding the thin film-graphene onto the target substrate; delaminating of the thin film-graphene from copper substrate using hydrogen bubble method. The objective of the present application is to provide a reliable method for transferring continuous CVD-grown monolayer of grapheme from copper substrate to the target substrates in particularly flexible and transparent plastics.
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公开(公告)号:WO2021142656A1
公开(公告)日:2021-07-22
申请号:PCT/CN2020/072218
申请日:2020-01-15
Inventor: HE, Feng , CHAO, Pengjie , CHEN, Hui
Abstract: Through the strategy of cyclohexane-1, 4-dione embedded into thieno [3, 4-b] thiophene unit, a highly electron-deficient core (TTDO) is synthesized and the corresponding donor polymer (PBTT-F) is also been developed. The nonfullerene photovoltaic device based on this new donor polymer exhibited an outstanding PCE of 16.1%with a very high fill factor of 77.1%, which demonstrate it a very promising donor for high performance solar cells.
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公开(公告)号:WO2022142477A1
公开(公告)日:2022-07-07
申请号:PCT/CN2021/118372
申请日:2021-09-15
Inventor: ZHANG, Xumu , GUO, Deyin , LI, Guanguan , CAO, Liu , LI, Yingjun , XU, Tiefeng , JI, Yanxi , ZHOU, Qifan , YANG, Yujian , ZHU, Tiaozhen
IPC: C07D487/04 , A61K31/53 , A61K31/706 , A61P31/14
Abstract: Provided are methods for treating coronavirus infections by administering modified nucleosides, ester and amino acid ester prodrugs of nucleoside, their pharmaceutically acceptable salts, and drug combination thereof, of Formula (I). The compounds, combination, and methods provided are particularly useful for preventing, mitigating, or treating coronavirus infections or cytopathic effects resulting from the replication or reproduction of coronaviruses and their variants, including SARS-CoV-2.
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公开(公告)号:WO2021016432A1
公开(公告)日:2021-01-28
申请号:PCT/US2020/043225
申请日:2020-07-23
Applicant: ARIZONA BOARD OF REGENTS ON BEHALF OF THE UNIVERSITY OF ARIZONA , SOUTHERN UNIVERSITY OF SCIENCE AND TECHNOLOGY
Inventor: MCGRATH, Dominic, V. , XU, Zongxiang , ARMSTRONG, Neal, R.
IPC: H01L51/00 , B82Y30/00 , C07D487/22
Abstract: The present invention provides methods for increasing stability and efficiency of organic perovskite materials for use in various electronic devices. In particular, methods of the invention use a non-peripheral substituted phthalocyanine for passivating defects in organic perovskite materials, thereby increasing its stability and efficiency relative to the same material in the absence of said non-peripheral substituted phthalocyanine.
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公开(公告)号:WO2020103343A1
公开(公告)日:2020-05-28
申请号:PCT/CN2019/074929
申请日:2019-02-13
Inventor: GUO, Chuanfei , LIU, Qingxian , YANG, Junlong , ZHANG, Jianming , WANG, Quan
IPC: A61B5/00
Abstract: Provided herein is a wearable garment sensor and preparation method and application thereof. The garment sensor comprises a fabric layer, a first electrode layer, a dielectric layer and a second electorde layer successively from bottom to top; wherein the dielectric layer has a porous structure and an ionic liquid is loaded on the pore walls of the dielectric layer.
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