화학공학소재연구정보센터
검색결과 : 14건
No. Article
1 Electronic structure of Ba(OH)(2) interface in inverted organic photovoltaics: Improved electron transport by charged state of C-60
Yoo J, Jeong J, Jung K, Hyun G, Kim M, Lee H, Yi Y
Applied Surface Science, 476, 435, 2019
2 Lanthanum (oxy)boride thin films for thermionic emission applications
Bellucci A, Mastellone M, Orlando S, Girolami M, Generosi A, Paci B, Soltani P, Mezzi A, Kaciulis S, Polini R, Trucchi DM
Applied Surface Science, 479, 296, 2019
3 Low work function intermetallic thin film as a back surface field material for hybrid solar cells
Ge KP, Chen JH, Chen BB, Shen YJ, Guo JX, Li F, Liu HX, Xu Y, Mai YH
Solar Energy, 162, 397, 2018
4 Computational analysis of a high-efficiency tunnel oxide passivated contact (TOPCon) solar cell with a low-work-function electron-selective-collection layer
Quan C, Zeng YH, Wang D, Liao MD, Tong H, Yang ZH, Yuan ZZ, Gao PQ, Yan BJ, Chen KM, Ye JC
Solar Energy, 170, 780, 2018
5 Effective Work Function Reduction of Practical Electrodes Using an Organometallic Dimer
Akaike K, Nardi MV, Oehzelt M, Frisch J, Opitz A, Christodoulou C, Ligorio G, Beyer P, Timpel M, Pis I, Bondino F, Moudgil K, Barlow S, Marder SR, Koch N
Advanced Functional Materials, 26(15), 2493, 2016
6 Work function reduction using 8-hydroxyquinolinolato-lithium for efficient inverted devices
Park S, Yi Y, Cho SW, Lee H
Chemical Physics Letters, 652, 102, 2016
7 Electronic structure of low work function electrodes modified by C16H33SH
Lee H, Cho SW, Park SH, Cho MH, Yi Y
Materials Research Bulletin, 58, 19, 2014
8 An Indium-Free Low Work Function Window Electrode for Organic Photovoltaics Which Improves with In-Situ Oxidation
Hutter OS, Stec HM, Hatton RA
Advanced Materials, 25(2), 284, 2013
9 Extremely environment-hard and low work function transfer-mold field emitter arrays
Nakamoto M, Moon J
Applied Surface Science, 275, 178, 2013
10 Unexpected current lowering by a low work-function metal contact: Mg/SI-GaAs
Dubecky F, Dubecky M, Hubik P, Kindl D, Gombia E, Baldini M, Necas V
Solid-State Electronics, 82, 72, 2013