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Weihong Qiao

Researcher at Dalian University of Technology

Publications -  21
Citations -  824

Weihong Qiao is an academic researcher from Dalian University of Technology. The author has contributed to research in topics: Pulmonary surfactant & Micelle. The author has an hindex of 13, co-authored 21 publications receiving 767 citations.

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Cationic Compounds Used in Lipoplexes and Polyplexes for Gene Delivery

TL;DR: This article reviews cationic lipids for gene therapy from chemistry viewpoint and classifies these compounds as monovalent cationIC lipids, polyvalent cATIONiclipids, catedic polymers, guanidine containing compounds, cationi peptides and cholesterol containing compounds and hope to provide suggestions on the development of these compounds through the discussion.
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Interfacial tension between crude oil and decylmethylnaphthalene sulfonate surfactant alkali-free flooding systems

TL;DR: In this article, the surface tension of decylmethylnaphthalene sulfonate (DMNS) surfactant aqueous solution and the dynamic interfacial tensions between crude oil, from Shandong Shengli Oil Field of China, and solution of the surfactants had been measured.
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Dynamic interfacial behavior between crude oil and octylmethylnaphthalene sulfonate surfactant flooding systems

TL;DR: In this paper, the authors explored the fundamental mechanisms for the lowering of dynamic interfacial tension (DIT) between crude oil, offered from Shengli Oil Field in China, and surfactant flooding systems.
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Dynamic interfacial tension behavior of the novel surfactant solutions and Daqing crude oil

TL;DR: In this paper, the authors show that the shape of the DIT curves between alkyl methylnaphthalene sulfonate (AMNS) and Daqing crude oil take on a V-shape, and the AMNS surfactants might be a good candidate for enhanced oil recovery in different oil fields.
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Effects of branching in hexadecylbenzene sulfonate isomers on interfacial tension behavior in oil/alkali systems

TL;DR: In this article, the effect of the molecular structure of surfactant on the reduction of interfacial tension of enhanced oil recovery (EOR) was investigated with three hexadecylbenzene sulfonate isomers (with benzene rings located at different positions along the alkyl chains).