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Institution

Qingdao University

EducationQingdao, China
About: Qingdao University is a education organization based out in Qingdao, China. It is known for research contribution in the topics: Cancer & Apoptosis. The organization has 35675 authors who have published 27275 publications receiving 374908 citations. The organization is also known as: Qīngdǎo Dàxué.
Topics: Cancer, Apoptosis, Cell growth, Medicine, Graphene


Papers
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Journal ArticleDOI
TL;DR: The results indicate that the wireless piezoelectric device designed and developed has potential applications in wearable medical electronics, particularly in the fields of rehabilitation and sports medicine.
Abstract: Real-time personalized motion monitoring and analysis are important for human health. Thus, to satisfy the needs in this area and the ever-increasing demand for wearable electronics, we design and develop a wireless piezoelectric device consisting of a piezoelectric pressure sensor based on electrospun PVDF/BaTiO3 nanowire (NW) nanocomposite fibers and a wireless circuit system integrated with a data conversion control module, a signal acquisition and amplification module, and a Bluetooth module. Finally, real-time piezoelectric signals of human motion can be displayed by an App on an Android mobile phone for wireless monitoring and analysis. This wireless piezoelectric device is proven to be sensitive to human motion such as squatting up and down, walking, and running. The results indicate that our wireless piezoelectric device has potential applications in wearable medical electronics, particularly in the fields of rehabilitation and sports medicine.

139 citations

Journal ArticleDOI
TL;DR: This paper leverage the third party auditor (TPA) in many existing public auditing designs, let it play the role of authorized party in this case, and make it in charge of both the storage auditing and the secure key updates for key-exposure resistance.
Abstract: Key-exposure resistance has always been an important issue for in-depth cyber defence in many security applications. Recently, how to deal with the key exposure problem in the settings of cloud storage auditing has been proposed and studied. To address the challenge, existing solutions all require the client to update his secret keys in every time period, which may inevitably bring in new local burdens to the client, especially those with limited computation resources, such as mobile phones. In this paper, we focus on how to make the key updates as transparent as possible for the client and propose a new paradigm called cloud storage auditing with verifiable outsourcing of key updates. In this paradigm, key updates can be safely outsourced to some authorized party, and thus the key-update burden on the client will be kept minimal. In particular, we leverage the third party auditor (TPA) in many existing public auditing designs, let it play the role of authorized party in our case, and make it in charge of both the storage auditing and the secure key updates for key-exposure resistance. In our design, TPA only needs to hold an encrypted version of the client’s secret key while doing all these burdensome tasks on behalf of the client. The client only needs to download the encrypted secret key from the TPA when uploading new files to cloud. Besides, our design also equips the client with capability to further verify the validity of the encrypted secret keys provided by the TPA. All these salient features are carefully designed to make the whole auditing procedure with key exposure resistance as transparent as possible for the client. We formalize the definition and the security model of this paradigm. The security proof and the performance simulation show that our detailed design instantiations are secure and efficient.

139 citations

Journal ArticleDOI
TL;DR: In this article, in-situ 2D and 3D microscopic technologies are used to analyze the influence of inclusions on pitting and stress corrosion cracking initiation of X70 steel in near-neutral pH solution.

139 citations

Journal ArticleDOI
TL;DR: In this paper, the role of microstructure characteristics in piezocatalytic activity was investigated by degradation of methyl orange solution under ultrasonic vibration, and experimental results indicated that BTO NWs with smaller diameter or being composed of smaller size crystallites contribute to better performance.

138 citations

Journal ArticleDOI
TL;DR: A rational strategy toward amorphous smart luminophores with colorful, excitation-dependent, and time-dependent p-RTP, excellent solution processability, and film-forming ability for versatile applications is outlined.
Abstract: Achieving persistent room-temperature phosphorescence (p-RTP), particularly those of tunable full-colors, from pure organic amorphous polymers is attractive but challenging. Particularly, those with tunable multicolor p-RTP in response to excitation wavelength and time are highly important but both fundamentally and technically underexplored. Here, a facile and general strategy toward color-tunable p-RTP from blue to orange-red based on amidation grafting of luminophores onto sodium alginate (SA) chains, resulting in amorphous polymers with distinct p-RTP and even impressively excitation-dependent and time-dependent afterglows is reported. p-RTP is associated with the unique semi-rigidified SA chains, effective hydrogen bonding network, and oxygen barrier properties of SA, whereas excitation-dependent and time-dependent afterglows should stem from the formation of diversified p-RTP emissive species with comparable but different lifetimes. These results outline a rational strategy toward amorphous smart luminophores with colorful, excitation-dependent, and time-dependent p-RTP, excellent solution processability, and film-forming ability for versatile applications.

138 citations


Authors

Showing all 35843 results

NameH-indexPapersCitations
Marjo-Riitta Järvelin156923100939
Seeram Ramakrishna147155299284
Joseph J.Y. Sung142124092035
Peng Shi137137165195
Jie Liu131153168891
Jun Yu121117481186
Yu-Guo Guo11342947383
Xiaoming Li113193272445
Wei Zhang112118993641
Jie Wu112153756708
Qian Wang108214865557
Yongmei Liu10040742382
Shuzhi Sam Ge9788340865
Chang Ming Li9789642888
Guo-Qiang Chen9462145953
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202376
2022442
20215,241
20204,525
20193,580
20182,624