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Table representation of search results timeline featuring number of search results per year.

Year Number of Results
1980 1
1983 1
1984 1
1989 2
1990 1
1993 1
1995 1
1996 4
1997 3
1998 3
1999 1
2000 6
2001 4
2002 6
2003 7
2004 6
2005 14
2006 17
2007 18
2008 17
2009 31
2010 24
2011 23
2012 33
2013 24
2014 19
2015 25
2016 29
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2018 63
2019 77
2020 93
2021 100
2022 118
2023 126
2024 66

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882 results

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Page 1
Porous Fe-Doped beta-Ni(OH)(2) Nanopyramid Array Electrodes for Water Splitting.
Qiao X, Kang H, Li Y, Cui K, Jia X, Liu H, Qin W, Pupucevski M, Wu G. Qiao X, et al. ACS Appl Mater Interfaces. 2020 Aug 12;12(32):36208-36219. doi: 10.1021/acsami.0c10024. Epub 2020 Aug 4. ACS Appl Mater Interfaces. 2020. PMID: 32687306
We report a highly efficient and stable electrode composed of a porous Fe-doped beta-nickel hydroxide nanopyramid array supported on nickel foam (U-Fe-beta-Ni(OH)(2)/NF) for overall water splitting. ...The introduced amount of Fe plays a signifi …
We report a highly efficient and stable electrode composed of a porous Fe-doped beta-nickel hydroxide nanopyramid array supported on …
Ni(OH)(2)-derived lamellar MoS(2)/Ni(3)S(2)/NF with Fe-doped heterojunction catalysts for efficient overall water splitting.
Dou M, Yao M, Ding K, Cheng Y, Shao H, Li S, Chen Y. Dou M, et al. Dalton Trans. 2023 Dec 12;52(48):18342-18353. doi: 10.1039/d3dt02830e. Dalton Trans. 2023. PMID: 37999648
With the help of flake Ni(OH)(2) synthesized in the first step, growth sites were provided for flake Ni(3)S(2). The electronic structure of Ni(3)S(2) was optimized by Fe doping, while the construction of the MoS(2)/Fe-Ni(3)S(2) het …
With the help of flake Ni(OH)(2) synthesized in the first step, growth sites were provided for flake Ni(3)S(2). The ele …
Designed formation of C/Fe(3)O(4)@Ni(OH)(2) cathode with enhanced pseudocapacitance for asymmetric supercapacitors.
Lv H, Xiao Z, Zhai S, Wang X, Hao J, An Q. Lv H, et al. J Colloid Interface Sci. 2023 Apr;635:176-185. doi: 10.1016/j.jcis.2022.12.137. Epub 2022 Dec 27. J Colloid Interface Sci. 2023. PMID: 36586143
The ternary heterostructures were fabricated by wrapping ultrathin nickel hydroxide (Ni(OH)(2)) nanosheets on the surfaces of Fe(3)O(4) nanoparticles-loaded on sodium carboxymethyl cellulose (CMC)-derived porous carbon, named as C/Fe(3)O(4)@Ni( …
The ternary heterostructures were fabricated by wrapping ultrathin nickel hydroxide (Ni(OH)(2)) nanosheets on the surfaces of …
Interfacial engineering of heterostructured Fe-Ni(3)S(2)/Ni(OH)(2) nanosheets with tailored d-band center for enhanced oxygen evolution catalysis.
Li G, Ma Z, Li W, Nie Y, Pei L, Zhong J, Miao Q, Hu ML, Wen X. Li G, et al. Dalton Trans. 2022 Nov 21;51(45):17391-17396. doi: 10.1039/d2dt02770d. Dalton Trans. 2022. PMID: 36325946
Herein, we report a structural and electronic engineering strategy by integrating self-standing Fe-doped Ni(3)S(2) (denoted by Fe-Ni(3)S(2)) nanosheet arrays with Ni(OH)(2) subunits to form heterostructured Fe-Ni(3)S(2)/N
Herein, we report a structural and electronic engineering strategy by integrating self-standing Fe-doped Ni(3)S(2) (denoted by …
Heterogeneous Fe-Doped Ni(OH)(2) Grown on Nickel Mesh by Electrodeposition for Efficient Alkaline Oxygen Evolution Reaction.
Mao F, Zhang J, Wang HF, Liu PF, Yang HG. Mao F, et al. Chemistry. 2023 Dec 11;29(69):e202302055. doi: 10.1002/chem.202302055. Epub 2023 Oct 30. Chemistry. 2023. PMID: 37720979
Designing highly excellent and stable catalysts for alkaline oxygen evolution reaction (OER) is gradually pivotal for clean energy development. In this work, a heterogeneous Fe-doped Ni(OH)(2) (Ni/Fe-0.1) was developed via simple one-step electr …
Designing highly excellent and stable catalysts for alkaline oxygen evolution reaction (OER) is gradually pivotal for clean energy developme …
Alkali-Induced In Situ Formation of Amorphous Ni(x)Fe(1-x)(OH)(2) from a Linear [M(3)(COO)(6)]-Based MOF Template for Overall Electrochemical Water Splitting.
Cheng Y, Yin Z, Ma WM, He ZX, Yao X, Lv WY. Cheng Y, et al. Inorg Chem. 2022 Feb 21;61(7):3327-3336. doi: 10.1021/acs.inorgchem.1c03982. Epub 2022 Feb 9. Inorg Chem. 2022. PMID: 35138829
A high-concentration alkali solution of 1 M KOH induced the in situ transformation of the MOF as a precursor to new amorphous electrocatalysts of [Ni(OH)(2)(H(2)O)(0.6)].H(2)O [a-Ni(OH)(2)] and its metal-doped derivatives of a-Ni(0.77)Fe( …
A high-concentration alkali solution of 1 M KOH induced the in situ transformation of the MOF as a precursor to new amorphous electrocatalys …
Metallic technetium sequestration in nickel core/shell microstructure during Fe(OH)(2) transformation with Ni doping.
Wang G, Kim DS, Olszta MJ, Bowden ME, Schreiber DK, Saslow SA, Um W, Riley BJ, Wang J, Kruger AA. Wang G, et al. J Hazard Mater. 2022 Mar 5;425:127779. doi: 10.1016/j.jhazmat.2021.127779. Epub 2021 Nov 16. J Hazard Mater. 2022. PMID: 34823954
This study investigates the impacts of Ni doping on technetium-99 (Tc) sequestration in aqueous solutions through transformation of Fe(OH)(2)(s) to iron spinel (magnetite) under alkaline conditions. ...The doped Ni ions mainly precipitated as fine F
This study investigates the impacts of Ni doping on technetium-99 (Tc) sequestration in aqueous solutions through transformation of …
One-step achievement of Fe-doped and interfacial Ru nanoclusters co-engineered Ni(OH)(2) electrocatalyst on Ni foam for promoted oxygen evolution reaction.
Liu F, Feng Z, Zhang X, Cui L, Liu J. Liu F, et al. J Colloid Interface Sci. 2023 May 15;638:498-505. doi: 10.1016/j.jcis.2023.01.037. Epub 2023 Jan 13. J Colloid Interface Sci. 2023. PMID: 36758260
Therefore, we applied a one-step hydrothermal method using cation exchange reaction (CER) to prepare Fe-doped and interfacial Ru nanoclusters co-engineered Ni(OH)(2) nanosheets directly grafted on Ni foam (Ru@Fe-Ni(OH)(2)/NF) for O …
Therefore, we applied a one-step hydrothermal method using cation exchange reaction (CER) to prepare Fe-doped and interfacial Ru nano …
Operando spectroscopies capturing surface reconstruction and interfacial electronic regulation by FeOOH@Fe(2)O(3)@Ni(OH)(2) heterostructures for robust oxygen evolution reaction.
Tang M, Liu X, Ali A, He Y, Shen P, Ouyang Y. Tang M, et al. J Colloid Interface Sci. 2023 Apr 15;636:501-511. doi: 10.1016/j.jcis.2023.01.021. Epub 2023 Jan 11. J Colloid Interface Sci. 2023. PMID: 36652825
The dynamic surface evolution has been detected by in-situ Raman spectroscopy, which exposes that FeOOH@Fe(2)O(3)@Ni(OH)(2) is reconstituted as Ni(Fe)OOH demonstrated as catalytically active species under high potential. X-ray photoelectron spec …
The dynamic surface evolution has been detected by in-situ Raman spectroscopy, which exposes that FeOOH@Fe(2)O(3)@Ni(OH
A High-Energy-Density Hybrid Supercapacitor with P-Ni(OH)(2) @Co(OH)(2) Core-Shell Heterostructure and Fe(2) O(3) Nanoneedle Arrays as Advanced Integrated Electrodes.
Li K, Zhao B, Bai J, Ma H, Fang Z, Zhu X, Sun Y. Li K, et al. Small. 2020 Aug;16(32):e2001974. doi: 10.1002/smll.202001974. Epub 2020 Jul 1. Small. 2020. PMID: 32613708
However, the poor conductivity and logy reaction kinetics of TMH/Os severely restrict their practical application. Herein, hierarchical core-shell P-Ni(OH)(2) @Co(OH)(2) micro/nanostructures are in situ grown on conductive Ni foam (P-Ni(OH
However, the poor conductivity and logy reaction kinetics of TMH/Os severely restrict their practical application. Herein, hierarchical core …
882 results