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

Ruddlesden-Popper Defects Act as a Free Surface: Role in Formation and Photophysical Properties of CsPbI(3)

Ruddlesden-Popper缺陷充当自由表面:在CsPbI(3)的形成和光物理性质中的作用

Li, Weilun; Yuan, Qimu; Chen, Yinan; Lilly, Joshua R S; Filip, Marina R; Herz, Laura M; Johnston, Michael B; Etheridge, Joanne

A Templating Approach to Controlling the Growth of Coevaporated Halide Perovskites

利用模板法控制共蒸发卤化物钙钛矿的生长

Yan, Siyu; Patel, Jay B; Lee, Jae Eun; Elmestekawy, Karim A; Ratnasingham, Sinclair R; Yuan, Qimu; Herz, Laura M; Noel, Nakita K; Johnston, Michael B

Correction to "A Templating Approach to Controlling the Growth of Coevaporated Halide Perovskites"

对“一种控制共蒸发卤化物钙钛矿生长的模板方法”的更正

Yan, Siyu; Patel, Jay B; Lee, Jae Eun; Elmestekawy, Karim A; Ratnasingham, Sinclair R; Yuan, Qimu; Herz, Laura M; Noel, Nakita K; Johnston, Michael B

Thermally Stable Perovskite Solar Cells by All-Vacuum Deposition

全真空沉积法制备热稳定钙钛矿太阳能电池

Yuan, Qimu; Lohmann, Kilian B; Oliver, Robert D J; Ramadan, Alexandra J; Yan, Siyu; Ball, James M; Christoforo, M Greyson; Noel, Nakita K; Snaith, Henry J; Herz, Laura M; Johnston, Michael B

Breath-by-breath measurement of exhaled ammonia by acetone-modifier positive photoionization ion mobility spectrometry via online dilution and purging sampling

采用丙酮改性正光电离离子迁移谱法,通过在线稀释和吹扫采样,逐次测量呼出气氨浓度。

Wang, Lu; Jiang, Dandan; Hua, Lei; Chen, Chuang; Li, Dongming; Wang, Weiguo; Xu, Yiqian; Yang, Qimu; Li, Haiyang; Leng, Song

Solvent-Free Method for Defect Reduction and Improved Performance of p-i-n Vapor-Deposited Perovskite Solar Cells

一种用于减少缺陷和提高pin型气相沉积钙钛矿太阳能电池性能的无溶剂方法

Lohmann, Kilian B; Motti, Silvia G; Oliver, Robert D J; Ramadan, Alexandra J; Sansom, Harry C; Yuan, Qimu; Elmestekawy, Karim A; Patel, Jay B; Ball, James M; Herz, Laura M; Snaith, Henry J; Johnston, Michael B

Bacterial composition and function during fermentation of Mongolia koumiss

蒙古马奶酒发酵过程中细菌组成及功能

Wu, Yue; Li, Yu; Gesudu, Qimu; Zhang, Juntao; Sun, Zhihong; Halatu, Haobisi; Menghe, Bilege; Liu, Wenjun