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Institution

Shanghai University

EducationShanghai, Shanghai, China
About: Shanghai University is a education organization based out in Shanghai, Shanghai, China. It is known for research contribution in the topics: Microstructure & Graphene. The organization has 59583 authors who have published 56840 publications receiving 753549 citations. The organization is also known as: Shànghǎi Dàxué.


Papers
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Journal ArticleDOI
TL;DR: In this article, a fiber-shaped light emitting electrochemical cell that can be woven and integrated with textiles offers new opportunities for smart fabrics, which can be used for wearable devices.
Abstract: A fibre-shaped light emitting electrochemical cell that can be woven and integrated with textiles offers new opportunities for smart fabrics.

377 citations

Journal ArticleDOI
Ji-Huan He1
TL;DR: In this article, the variational iteration method is applied to delay analytical approximate solutions for analytical approximations to delay differential equations, and it is shown to be applicable to delay-sensitive problems.

375 citations

Journal ArticleDOI
Chunju Li1
TL;DR: An overview of the construction of pillararene-based supramolecular polymers is provided and recent research endeavors of the marriage between pillararenes-based host-guest pairs and polymeric aggregates are covered.

368 citations

Journal ArticleDOI
Jinliang Liu1, Yi Liu1, Qian Liu1, Chunyan Li1, Lining Sun2, Fuyou Li1 
TL;DR: Chromophoric iridium(III) complex-coated NaYF nanocrystals are demonstrated as a ratiometric upconversion luminescence (UCL) probe for highly selective detection of cyanide anion and bioimaging of CN(-) in living cells through inhibition of the energy transfer from the UCL of the nanocry crystals to the absorbance of the chromophoric complex.
Abstract: Chromophoric iridium(III) complex-coated NaYF4: 20%Yb, 1.6%Er, 0.4%Tm nanocrystals are demonstrated as a ratiometric upconversion luminescence (UCL) probe for highly selective detection of cyanide anion and bioimaging of CN– in living cells through inhibition of the energy transfer from the UCL of the nanocrystals to the absorbance of the chromophoric complex. The UCL probe provides a very low detection limit of 0.18 μM CN– in the aqueous solution.

366 citations


Authors

Showing all 59993 results

NameH-indexPapersCitations
Zhong Lin Wang2452529259003
Yang Yang1712644153049
Yang Liu1292506122380
Zhen Li127171271351
Xin Wang121150364930
Jian Liu117209073156
Xin Li114277871389
Wei Zhang112118993641
Jianjun Liu112104071032
Liquan Chen11168944229
Jin-Quan Yu11143843324
Jonathan L. Sessler11199748758
Peng Wang108167254529
Qian Wang108214865557
Wei Zhang104291164923
Network Information
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
2023182
2022741
20216,318
20205,569
20195,063
20184,235