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Institution

Shandong University

EducationJinan, Shandong, China
About: Shandong University is a education organization based out in Jinan, Shandong, China. It is known for research contribution in the topics: Laser & Cancer. The organization has 99070 authors who have published 99160 publications receiving 1625094 citations. The organization is also known as: Shāndōng Dàxué.
Topics: Laser, Cancer, Apoptosis, Microstructure, Cell growth


Papers
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Journal ArticleDOI
Li Wang1, Jian Zhang1, Ran Zhao1, Cong Li1, Ye Li1, Chenglu Zhang1 
TL;DR: In this paper, a low cost activated carbon was prepared from polygonum orientale linn by phosphoric acid activation and its ability to remove the basic dyes, malachite green (MG) and rhodamine B (RB), was evaluated.

274 citations

Journal ArticleDOI
TL;DR: A luminescent europium-organic framework with tubular channels based on the H4BTMIPA ligand resulted in complex that can selectively sense Fe(3+) and Al( 3+) ions through fluorescence quenching and enhancement, respectively.

274 citations

Journal ArticleDOI
TL;DR: The accurate and full basic data in the work is beneficial to clarifying the binding mechanism of TC with HSA in vivo and understanding its effect on protein function during the blood transportation process.

274 citations

Journal ArticleDOI
Jinshan Yu1, Yi Ding1, Caixia Xu1, Akihisa Inoue1, Toshio Sakurai1, Mingwei Chen1 
TL;DR: In this paper, the fabrication of bimodal nanoporous palladium with pore sizes of ∼50 and 5 nm by electrochemically dealloying a ternary Pd30Ni50P20 metallic glass was reported.
Abstract: We report the fabrication of bimodal nanoporous palladium with pore sizes of ∼50 and 5 nm by electrochemically dealloying a ternary Pd30Ni50P20 metallic glass. The nanostructured palladium is expected to have superior performances in functional applications because of its nanoporous channels for fast mass transport and chemical reactions. This study paves a new way for fabricating novel nanoporous metals by electrochemically dealloying multicomponent metallic glasses.

274 citations

Journal ArticleDOI
TL;DR: In this article, a functionalized oxygen-deficient Co 3 O 4 nanorods were used for supercapacitor and water splitting dual applications, achieving a significantly high specific capacitance of 739 F ǫ g − 1 and an ultralow overpotential of 275 mV at 10mV at OER with ultralong stability of over 300 mV.

274 citations


Authors

Showing all 99666 results

NameH-indexPapersCitations
Jing Wang1844046202769
Yang Gao1682047146301
Gang Chen1673372149819
Yang Yang1642704144071
Andrew D. Hamilton1511334105439
Ben Zhong Tang1492007116294
Yoshio Bando147123480883
Guanrong Chen141165292218
Karl Jakobs138137997670
Jun Chen136185677368
Shu Li136100178390
Hui Li1352982105903
Lei Zhang135224099365
Elizaveta Shabalina133142192273
George A. Calin133654106942
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
20241
2023279
20221,270
202110,934
20209,809
20198,538