日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Economical Perovskite Solar Cell Enabled by Triple Cost-Reduction Strategies

三重成本降低策略助力经济型钙钛矿太阳能电池的实现

Choodam, Kanokwan; Kamjam, Nattawut; Sukpan, Noppawit; Seriwattanachai, Chaowaphat; Inna, Anuchytt; Shin Thant, KoKo; Srathongsian, Ladda; Supruangnet, Ratchadaporn; Nakajima, Hideki; Kaewprajak, Anusit; Kumnorkaew, Pisist; Wongratanaphisan, Duangmanee; Ruankham, Pipat; Pakawatpanurut, Pasit; Kanjanaboos, Pongsakorn

Enhancing charge transfer in low-light conditions through the incorporation of carbon nanotubes in carbon-based perovskite solar cells for indoor applications

通过在碳基钙钛矿太阳能电池中引入碳纳米管来增强弱光条件下的电荷转移,以用于室内应用

Makming, Piyapond; Pudkon, Watcharapong; Ruengsuk, Araya; Thongimboon, Kumaree; Kanlayapattamapong, Thanawat; Arpornrat, Theerapat; Seriwattanachai, Chaowaphat; Wongratanaphisan, Duangmanee; Pakawatpanurut, Pasit; Kanjanaboos, Pongsakorn; Ruankham, Pipat; Intaniwet, Akarin

Cs and Br tuning to achieve ultralow-hysteresis and high-performance indoor triple cation perovskite solar cell with low-cost carbon-based electrode

Cs 和 Br 调节以实现具有低成本碳基电极的超低磁滞和高性能室内三阳离子钙钛矿太阳能电池

Ladda Srathongsian, Anusit Kaewprajak, Atittaya Naikaew, Chaowaphat Seriwattanachai, Napan Phuphathanaphong, Anuchytt Inna, Thana Chotchuangchutchaval, Woraprom Passatorntaschakorn, Pisist Kumnorkaew, Somboon Sahasithiwat, Duangmanee Wongratanaphisan, Pipat Ruankham, Ratchadaporn Supruangnet, Hideki

Metal-insulator transition effect on Graphene/VO[Formula: see text] heterostructure via temperature-dependent Raman spectroscopy and resistivity measurement

利用温度依赖性拉曼光谱和电阻率测量研究石墨烯/VO[Formula: see text]异质结构的金属-绝缘体转变效应

Lerttraikul, Kittitat; Rattanasakuldilok, Wirunchana; Pakornchote, Teerachote; Bovornratanaraks, Thiti; Klanurak, Illias; Taychatanapat, Thiti; Srathongsian, Ladda; Seriwatanachai, Chaowaphat; Kanjanaboos, Pongsakorn; Chatraphorn, Sojiphong; Kittiwatanakul, Salinporn

Towards device stability of perovskite solar cells through low-cost alkyl-terminated SFX-based hole transporting materials and carbon electrodes

通过低成本烷基封端的SFX基空穴传输材料和碳电极提高钙钛矿太阳能电池的器件稳定性

Manit, Jeeranun; Kanjanaboos, Pongsakorn; Naweephattana, Phiphob; Naikaew, Atittaya; Srathongsian, Ladda; Seriwattanachai, Chaowaphat; Supruangnet, Ratchadaporn; Nakajima, Hideki; Eiamprasert, Utt; Kiatisevi, Supavadee

Photoexcitation of perovskite precursor solution to induce high-valent iodoplumbate species for wide bandgap perovskite solar cells with enhanced photocurrent

光激发钙钛矿前驱体溶液以诱导高价碘铅酸盐物种,从而制备具有增强光电流的宽带隙钙钛矿太阳能电池。

Naikaew, Atittaya; Krajangsang, Taweewat; Srathongsian, Ladda; Seriwattanachai, Chaowaphat; Sakata, Patawee; Burimart, Supavudh; Sanglee, Kanyanee; Khotmungkhun, Kittikhun; Ruankham, Pipat; Romphosri, Suwat; Limmanee, Amornrat; Kanjanaboos, Pongsakorn

All green sulfolane-based solvent enhanced electrical conductivity and rigidity of perovskite crystalline layer

所有绿色磺酰胺基溶剂均能增强钙钛矿晶体层的导电性和刚性。

Siripraparat, Akarapitch; Mittanonsakul, Pimolrat; Pansa-Ngat, Pimsuda; Seriwattanachai, Chaowaphat; Kumnorkaew, Pisist; Kaewprajak, Anusit; Kanjanaboos, Pongsakorn; Pakawatpanurut, Pasit

Robust perovskite formation via vacuum thermal annealing for indoor perovskite solar cells

利用真空热退火法形成稳定的钙钛矿,用于室内钙钛矿太阳能电池

Penpong, Kwanchai; Seriwatanachai, Chaowaphat; Naikaew, Atittaya; Phuphathanaphong, Napan; Thant, Ko Ko Shin; Srathongsian, Ladda; Sukwiboon, Thunrada; Inna, Anuchytt; Sahasithiwat, Somboon; Pakawatpanurut, Pasit; Wongratanaphisan, Duangmanee; Ruankham, Pipat; Kanjanaboos, Pongsakorn

Improving morphology and optoelectronic properties of ultra-wide bandgap perovskite via Cs tuning for clear solar cell and UV detection applications

通过 Cs 调节改善超宽带隙钙钛矿的形貌和光电特性,以实现清晰的太阳能电池和紫外线检测应用

Myo Zin Tun, Pimsuda Pansa-Ngat, Pipat Ruankham, Ko Ko Shin Thant, Sirawit Kamnoedmanee, Chaowaphat Seriwattanachai, Worawut Rueangsawang, Ratchadaporn Supruangnet, Hideki Nakajima, Pongsakorn Kanjanaboos