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

A prospective ecological risk assessment of high-efficiency III-V/silicon tandem solar cells

高效III-V族/硅串联太阳能电池的预期生态风险评估

Blanco, C F; Quik, J T K; Hof, M; Fuortes, A; Behrens, P; Cucurachi, S; Peijnenburg, W J G M; Dimroth, F; Vijver, M G

Efficient direct solar-to-hydrogen conversion by in situ interface transformation of a tandem structure

通过串联结构的原位界面转变实现高效的太阳能直接制氢

May, Matthias M; Lewerenz, Hans-Joachim; Lackner, David; Dimroth, Frank; Hannappel, Thomas

Structure-function relations in oxaloacetate decarboxylase complex. Fluorescence and infrared approaches to monitor oxomalonate and Na(+) binding effect

草酰乙酸脱羧酶复合物的结构-功能关系。利用荧光和红外光谱方法监测氧代丙二酸和Na(+)的结合效应

Granjon, Thierry; Maniti, Ofelia; Auchli, Yolanda; Dahinden, Pius; Buchet, René; Marcillat, Olivier; Dimroth, Peter

Catalytic and mechanical cycles in F-ATP synthases. Fourth in the Cycles Review Series

F-ATP合酶中的催化循环和机械循环。循环回顾系列之四

Dimroth, Peter; von Ballmoos, Christoph; Meier, Thomas

Inhibition of ATP hydrolysis by thermoalkaliphilic F1Fo-ATP synthase is controlled by the C terminus of the epsilon subunit

嗜热嗜碱F1Fo-ATP合酶对ATP水解的抑制作用受ε亚基C端调控。

Keis, Stefanie; Stocker, Achim; Dimroth, Peter; Cook, Gregory M

The c15 ring of the Spirulina platensis F-ATP synthase: F1/F0 symmetry mismatch is not obligatory

螺旋藻F-ATP合酶的c15环:F1/F0对称性不匹配并非必然

Pogoryelov, Denys; Yu, Jinshu; Meier, Thomas; Vonck, Janet; Dimroth, Peter; Muller, Daniel J

Intersubunit bridging by Na+ ions as a rationale for the unusual stability of the c-rings of Na+-translocating F1F0 ATP synthases

Na+离子介导的亚基间桥接是Na+转运F1F0 ATP合酶c环异常稳定性的理论依据

Meier, Thomas; Dimroth, Peter

Bacterial Na(+)-ATP synthase has an undecameric rotor

细菌钠离子ATP合酶具有十一聚体转子。

Stahlberg, H; Müller, D J; Suda, K; Fotiadis, D; Engel, A; Meier, T; Matthey, U; Dimroth, P

Catabolite repression of the citrate fermentation genes in Klebsiella pneumoniae: evidence for involvement of the cyclic AMP receptor protein.

肺炎克雷伯菌中柠檬酸发酵基因的分解代谢物阻遏:环磷酸腺苷受体蛋白参与的证据

Meyer M, Dimroth P, Bott M

ATP synthesis by F-type ATP synthase is obligatorily dependent on the transmembrane voltage

F型ATP合酶合成ATP的过程必须依赖于跨膜电压。

Kaim, G; Dimroth, P