Preparation of a novel iron-based biochar composite for removal of hexavalent chromium in water
In: Environmental science and pollution research: ESPR, Band 27, Heft 9, S. 9214-9226
ISSN: 1614-7499
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In: Environmental science and pollution research: ESPR, Band 27, Heft 9, S. 9214-9226
ISSN: 1614-7499
In: BITE-D-21-08341
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In: Environmental science and pollution research: ESPR, Band 27, Heft 19, S. 23761-23768
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In: Environmental science and pollution research: ESPR, Band 25, Heft 1, S. 91-103
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In: CHEM98599
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The possibility of p-wave pairing in superconductors has been proposed more than five decades ago, but has not yet been convincingly demonstrated. One difficulty is that some p-wave states are thermodynamically indistinguishable from s-wave, while others are very similar to d-wave states. Here we studied the self-field critical current of NdFeAs(O,F) thin films in order to extract absolute values of the London penetration depth, the superconducting energy gap, and the relative jump in specific heat at the superconducting transition temperature, and find that all the deduced physical parameters strongly indicate that NdFeAs(O,F) is a bulk p-wave superconductor. Further investigation revealed that single atomic layer FeSe also shows p-wave pairing. In an attempt to generalize these findings, we re-examined the whole inventory of superfluid density measurements in iron-based superconductors and show quite generally that single-band weak-coupling p-wave superconductivity is exhibited in iron-based superconductors. © 2019, The Author(s). ; Japan Science and Technology Corporation, JST: JPMJCR18J4 ; Government Council on Grants, Russian Federation ; Japan Society for the Promotion of Science, JSPS: 16H04646 ; АААА-А18-118020190104-3 ; The authors thank Prof. Jeffery L. Tallon (Victoria University of Wellington, New Zealand) and Prof. Christian Bernhard (University of Fribourg, Switzerland) for helpful discussions, and also for reading and commenting on the manuscript. EFT is grateful for financial support provided by the state assignment of Minobrnauki of Russia (theme "Pressure" No. АААА-А18-118020190104-3) and by Act 211 of the Government of the Russian Federation, contract No. 02.A03.21.0006. KI and HI acknowledge support by the Japan Society for the Promotion of Science (JSPS) Grant-in-Aid for Scientific Research (B) Grant Number 16H04646, as well as JST CREST Grant Number JPMJCR18J4. The Article Processing Charge for this publication was provided by Ural Federal University, Russia.
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