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Institution

Kangwon National University

EducationChuncheon, South Korea
About: Kangwon National University is a education organization based out in Chuncheon, South Korea. It is known for research contribution in the topics: Population & Catalysis. The organization has 9836 authors who have published 20002 publications receiving 393562 citations. The organization is also known as: KNU.


Papers
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Journal ArticleDOI
TL;DR: This study was to quantify the migration of bisphenol A (BPA), from new polycarbonate (PC) baby bottle into the water filled in the bottle, with repeated use up to 100 times and extraction by water temperature ranging from 40 degrees C to 100 degrees C.

148 citations

Journal ArticleDOI
TL;DR: An ion-pair receptor, the calix[ 4]pyrrole-calix[4]arene pseudodimer 2, bearing a strong anion- Recognition site but not a weak cation-recognition site, has been synthesized and characterized by standard spectroscopic means and via single-crystal X-ray diffraction analysis.
Abstract: An ion-pair receptor, the calix[4]pyrrole-calix[4]arene pseudodimer 2, bearing a strong anion-recognition site but not a weak cation-recognition site, has been synthesized and characterized by standard spectroscopic means and via single-crystal X-ray diffraction analysis. In 10% CD(3)OD in CDCl(3) (v/v), this new receptor binds neither the Cs(+) cation nor the F(-) anion when exposed to these species in the presence of other counterions; however, it forms a stable 1:1 solvent-separated CsF complex when exposed to these two ions in concert with one another in this same solvent mixture. In contrast to what is seen in the case of a previously reported crown ether "strapped" calixarene-calixpyrrole ion-pair receptor 1 (J. Am. Chem. Soc. 2008, 130, 13162-13166), where Cs(+) cation recognition takes place within the crown, in 2.CsF cation recognition takes place within the receptor cavity itself, as inferred from both single-crystal X-ray diffraction analyses and (1)H NMR spectroscopic studies. This binding mode is supported by calculations carried out using the MMFF94 force field model. In 10% CD(3)OD in CDCl(3) (v/v), receptor 2 shows selectivity for CsF over the Cs(+) salts of Cl(-), Br(-), and NO(3)(-) but will bind these other cesium salts in the absence of fluoride, both in solution and in the solid state. In the case of CsCl, an unprecedented 2:2 complex is observed in the solid state that is characterized by two different ion-pair binding modes. One of these consists of a contact ion pair with the cesium cation and chloride anion both being bound within the central binding pocket and in direct contact with one another. The other mode involves a chloride anion bound to the pyrrole NH protons of a calixpyrrole subunit and a cesium cation sandwiched between two cone shaped calix[4]pyrroles originating from separate receptor units. In contrast to what is seen for CsF and CsCl, single-crystal X-ray structural analyses and (1)H NMR spectroscopic studies reveal that receptor 2 forms a 1:1 complex with CsNO(3), with the ions bound in the form of a contact ion pair. Thus, depending on the counteranion, receptor 2 is able to stabilize three different ion-pair binding modes with Cs(+), namely solvent-bridged, contact, and host-separated.

148 citations

Journal ArticleDOI
TL;DR: In this article, the authors investigated what resources teachers acquired during these interventions that explained why they are so able to successfully upgrade the quality of their motivating style, and found that intervention-enabled gains in teaching efficacy and intrinsic instructional goals.

148 citations

Journal ArticleDOI
TL;DR: The main goal of this paper is to evaluate the effect of mutual interference on the performance of IEEE 802.15.4 and IEEE802.11b systems.

148 citations

Journal ArticleDOI
TL;DR: In this article, a review focusing on the very wide interest in phosphorus recovery from wastewater, with scientific research underway in countries across the globe, is presented, with a brief description of MAP purification and dissolution to economically exploit MAP as a phosphate and magnesium source.
Abstract: To address the issues of wastewater treatment and depleting phosphorus (P) resources, the present review focuses on the very wide interest in P recovery from wastewater, with scientific research underway in countries across the globe. The study describes the growing concern for diminishing P resources and then the chemical principle of magnesium ammonium phosphate (MAP) precipitation, factors influencing MAP crystallization, and various developments achieved through bench, pilot and full scale MAP reactors. A brief description is given of MAP purification and dissolution to economically exploit MAP as a phosphate and magnesium source. Experience in re-use of recovered MAP as a sustainable agriculture fertilizer is discussed including pot and field trials. © 2012 Society of Chemical Industry

147 citations


Authors

Showing all 9904 results

NameH-indexPapersCitations
Marco Zanetti1451439104610
Teruki Kamon1422034115633
G. Della Ricca133159892678
Anna Kropivnitskaya128122180563
Filip Thyssen12582769781
Giacomo Fedi12281466889
Shi Xue Dou122202874031
Anna Zanetti120148871375
Aldo Penzo120122380085
Stefano Belforte118107069606
Matteo Marone11554053662
Vieri Candelise11397561581
Soon-Kwon Nam11153754979
Andrea Schizzi10747547634
Michael R. Wasielewski10776649082
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202338
2022128
20211,546
20201,425
20191,294
20181,255