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Xiang-Yu Kong

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Articles 124
Citations 722
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Recent Articles
1.
Yang L, Kong X, Wen L, Jiang L
ACS Nano . 2025 Feb; 19(8):7434-7443. PMID: 39961788
The extraction of uranium from seawater offers a sustainable pathway to secure nuclear fuel supplies, crucial for the transition to low-carbon energy systems. However, the low concentration of uranium and...
2.
Wu Y, Wang Q, Li X, Li K, Huang D, Zou K, et al.
ACS Nano . 2025 Jan; 19(3):3781-3790. PMID: 39808732
Human sweat has the potential to be sufficiently utilized for noninvasive monitoring. Given the complexity of sweat secretion, the sensitivity and selectivity of sweat monitoring should be further improved. Here,...
3.
Li X, Zhu C, Wu Y, Kong X, Wen L
Nanoscale . 2024 Dec; 17(3):1225-1237. PMID: 39623942
The acute sensory behaviour in living organisms relies on the highly efficient transport behaviour of ions in biological nanochannels, which has inspired the design and applications of artificial solid-state nanochannels...
4.
Zou K, Ling H, Wang Q, Zhu C, Zhang Z, Huang D, et al.
Nat Commun . 2024 Nov; 15(1):10231. PMID: 39592643
Two-dimensional (2D) nanofluidic channels with confined transport pathways and abundant surface functional groups have been extensively investigated to achieve osmotic energy harvesting. However, solely relying on intrinsic interlayer channels results...
5.
Li X, Liu Z, Yang L, Zhou S, Qian Y, Wu Y, et al.
Chem Sci . 2024 Nov; 15(46):19504-19512. PMID: 39568954
Explosives, as high-energy materials, could generate huge destructive explosions along with a massive release of energy. The regulatory or illegal transportation of explosives threatens the peace and stability worldwide. Among...
6.
He X, Qian Y, Wu Y, Yan Z, Lin X, Kong X, et al.
Angew Chem Int Ed Engl . 2024 Sep; 63(50):e202411563. PMID: 39226231
Zinc (Zn) metal batteries could be the technology of choice for sustainable battery chemistries owing to its better safety and cost advantage. However, their cycle life and Coulombic efficiency (CE)...
7.
Zhou M, Jin X, Jia M, Quan D, Liu B, Wei Y, et al.
ACS Appl Mater Interfaces . 2024 Jul; 16(30):39321-39329. PMID: 39024512
Biological photoresponsive ion transport systems consistently attract researchers' attention owing to their remarkable functions of harvesting energy from nature and participating in visual perception systems. Designing and constructing artificial light-driven...
8.
Xin W, Cui Y, Qian Y, Liu T, Kong X, Ling H, et al.
Nat Commun . 2024 Jul; 15(1):5876. PMID: 38997277
Biological ion channels exhibit high selectivity and permeability of ions because of their asymmetrical pore structures and surface chemistries. Here, we demonstrate a biomimetic nanofluidic channel (BNC) with an asymmetrical...
9.
Huang D, Zou K, Wu Y, Li K, Zhang Z, Liu T, et al.
J Am Chem Soc . 2024 Jun; PMID: 38842082
Biological ion channels exhibit switchable cation transport with ultrahigh selectivity for efficient energy conversion, such as Ca-activated TRPM4 channels tuned by cation-π interactions, but achieving an analogous highly selective function...
10.
Jin X, Zeng Y, Zhou M, Quan D, Jia M, Liu B, et al.
Small . 2024 Apr; 20(35):e2401264. PMID: 38634249
Biological photo-responsive ion channels play important roles in the important metabolic processes of living beings. To mimic the unique functions of biological prototypes, the transition metal dichalcogenides, owing to their...