Maher F El-Kady
Overview
Explore the profile of Maher F El-Kady including associated specialties, affiliations and a list of published articles.
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33
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1010
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Recent Articles
11.
Dianat N, Rahmanifar M, Noori A, El-Kady M, Chang X, Kaner R, et al.
Nano Lett
. 2021 Nov;
21(22):9485-9493.
PMID: 34738821
Because of increasing interest in environmentally benign supercapacitors, earth-abundant biopolymers have found their way into value-added applications. Herein, a promising nanocomposite based on an interpenetrating network of polyaniline and sulfonated...
12.
Ahmed A, Hassan I, Mosa I, Elsanadidy E, Phadke G, El-Kady M, et al.
Nano Energy
. 2020 Sep;
60:17-25.
PMID: 32953424
The development of power generators that can function in harsh snowy environments and in contact with snow can be beneficial but challenging to accomplish. Herein, we introduce the first snow-based...
13.
Ahmed A, Hassan I, Helal A, Sencadas V, Radhi A, Jeong C, et al.
iScience
. 2020 Jul;
23(7):101286.
PMID: 32622264
Triboelectric nanogenerators (TENGs) and piezoelectric generators (PGs) are generally considered the two most common approaches for harvesting ambient mechanical energy that is ubiquitous in our everyday life. The main difference...
14.
Shabangoli Y, El-Kady M, Nazari M, Dadashpour E, Noori A, Rahmanifar M, et al.
Small
. 2020 Jun;
16(28):e2001340.
PMID: 32519514
The surging interest in high performance, low-cost, and safe energy storage devices has spurred tremendous research efforts in the development of advanced electrode active materials. Herein, the in situ growth...
15.
Ahmed A, Hassan I, El-Kady M, Radhi A, Jeong C, Selvaganapathy P, et al.
Adv Sci (Weinh)
. 2019 Dec;
6(24):1802230.
PMID: 31871856
Since their debut in 2012, triboelectric nanogenerators (TENGs) have attained high performance in terms of both energy density and instantaneous conversion, reaching up to 500 W m and 85%, respectively,...
16.
Shabangoli Y, Rahmanifar M, Noori A, El-Kady M, Kaner R, Mousavi M
ACS Nano
. 2019 Oct;
13(11):12567-12576.
PMID: 31633927
The pursuit of new negative electrode materials for redox supercapacitors with a high capacitance, boosted energy, and high rate capability is still a tremendous challenge. Herein, we report a Nile...
17.
Noori A, El-Kady M, Rahmanifar M, Kaner R, Mousavi M
Chem Soc Rev
. 2019 Feb;
48(5):1272-1341.
PMID: 30741286
Over the past decade, electrochemical energy storage (EES) devices have greatly improved, as a wide variety of advanced electrode active materials and new device architectures have been developed. These new...
18.
Shao Y, El-Kady M, Sun J, Li Y, Zhang Q, Zhu M, et al.
Chem Rev
. 2018 Sep;
118(18):9233-9280.
PMID: 30204424
Ongoing technological advances in diverse fields including portable electronics, transportation, and green energy are often hindered by the insufficient capability of energy-storage devices. By taking advantage of two different electrode...
19.
Jung D, Saleh L, Berkson Z, El-Kady M, Hwang J, Mohamed N, et al.
Nat Mater
. 2018 Mar;
17(4):369.
PMID: 29549301
In the version of this Article originally published, Liban M. A. Saleh was incorrectly listed as Liban A. M. Saleh due to a technical error. This has now been amended...
20.
Jung D, Saleh L, Berkson Z, El-Kady M, Hwang J, Mohamed N, et al.
Nat Mater
. 2018 Mar;
17(4):341-348.
PMID: 29507417
There is significant interest in the development of methods to create hybrid materials that transform capabilities, in particular for Earth-abundant metal oxides, such as TiO, to give improved or new...