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During the pyrolysis process, volatile CNx species from dicyandiamide were trapped by ZIF-67@Ni-ZIF nanosheets, simultaneously introducing nitrogen atom into carbon matrix to achieve the rich-defect porous nanotubes and abundant cavity structure.
During the pyrolysis process, volatile CNx species from dicyandiamide were trapped by ZIF-67@Ni-ZIF nanosheets, simultaneously introducing nitrogen atom into carbon matrix to achieve the rich-defect porous nanotubes and abundant cavity structure.
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During the microwave pyrolysis process, volatile N, S-containing species from trithiocyanuric acid reactant were trapped and doped into carbonaceous biomass precursor to achieving the rich-defect porous nanotubes and abundant cavity structure.
During the microwave pyrolysis process, volatile N, S-containing species from trithiocyanuric acid reactant were trapped and doped into carbonaceous biomass precursor to achieving the rich-defect porous nanotubes and abundant cavity structure.
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10.1039/D0TA11770F
Herein, we present a simple dual-template strategy for in situ fabrication of one-dimensional rhodium mesoporous nanotubes (Rh MNTs), in which the obtained Ni nanowires and diblock copolymer micelles facilitate the evolution of tubular interiors and mesoporous exteriors, respectively.
Herein, we present a simple dual-template strategy for in situ fabrication of one-dimensional rhodium mesoporous nanotubes (Rh MNTs), in which the obtained Ni nanowires and diblock copolymer micelles facilitate the evolution of tubular interiors and mesoporous exteriors, respectively.
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10.1016/J.APCATB.2021.119995
Herein, a dual strategy was used to successfully synthesize carbon/defect (nitrogen vacancy) comodified PCN (cd-PCN) porous nanotubes with increased surface area and enhanced photoabsorption, charge separation, and photocatalytic H2 evolution.
Herein, a dual strategy was used to successfully synthesize carbon/defect (nitrogen vacancy) comodified PCN (cd-PCN) porous nanotubes with increased surface area and enhanced photoabsorption, charge separation, and photocatalytic H2 evolution.
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10.1039/C8TA10544H
Herein, we proposed a facile wet-chemical method to synthesize superlong Pt|Te mesoporous nanotubes (Pt|Te MNTs) using tellurium (Te) nanowires (NWs) as a sacrificial template.
Herein, we proposed a facile wet-chemical method to synthesize superlong Pt|Te mesoporous nanotubes (Pt|Te MNTs) using tellurium (Te) nanowires (NWs) as a sacrificial template.
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10.1016/J.IJHYDENE.2019.05.006
Ta2O5 hollow fibers composed of interconnected mesoporous nanotubes were fabricated by sol-gel method using polysulfone hollow fibers and P123 as the templates.
Ta2O5 hollow fibers composed of interconnected mesoporous nanotubes were fabricated by sol-gel method using polysulfone hollow fibers and P123 as the templates.
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10.1021/ACSANM.8B02206
This work offers a feasible method to design one-dimensional mesoporous nanotubes with tunable composition for various promising applications.
This work offers a feasible method to design one-dimensional mesoporous nanotubes with tunable composition for various promising applications.
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10.1021/ACSSUSCHEMENG.9B00872
In this work, we propose a facile strategy to fabricate one-dimensional PtM (M = Co, Ni) mesoporous nanotubes (PtM MNTs), in which F127 and Te nanowires facilitate the formation of mesoporous exteriors and cannular interiors, respectively.
In this work, we propose a facile strategy to fabricate one-dimensional PtM (M = Co, Ni) mesoporous nanotubes (PtM MNTs), in which F127 and Te nanowires facilitate the formation of mesoporous exteriors and cannular interiors, respectively.
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10.1016/J.IJENGSCI.2019.01.002
In the current work, free vibration of porous nanotubes is studied using Timoshenko beam model.
In the current work, free vibration of porous nanotubes is studied using Timoshenko beam model.
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10.1002/chem.201806382
In this work, tellurium nanowires and F127 triblock copolymer are used as self-sacrificial and soft templates, respectively, to synthesize PtRuTe mesoporous nanotubes (MNTs).
In this work, tellurium nanowires and F127 triblock copolymer are used as self-sacrificial and soft templates, respectively, to synthesize PtRuTe mesoporous nanotubes (MNTs).
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10.1016/J.CERAMINT.2018.09.260
Herein, mullite SmMn2O5 nanofibers (SNFs), nanotube-in-tubes (NT@NTs), and porous nanotubes (PNTs) have been achieved, via optimized electrospinning technique and annealing procedure.
Herein, mullite SmMn2O5 nanofibers (SNFs), nanotube-in-tubes (NT@NTs), and porous nanotubes (PNTs) have been achieved, via optimized electrospinning technique and annealing procedure.
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