Mxene Nanosheets
Mxene 纳米片
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Mxene Nanosheets sentence examples within large specific surface
5 nanoparticles on the surface of MXene nanosheets to obtain MMC-W nanocomposites with 3D flower-like structure, which could give MMC-W large specific surface area.
MXene 纳米片表面上的 5 个纳米颗粒,以获得具有 3D 花状结构的 MMC-W 纳米复合材料,可赋予 MMC-W 较大的比表面积。
MXene 纳米片表面上的 5 个纳米颗粒,以获得具有 3D 花状结构的 MMC-W 纳米复合材料,可赋予 MMC-W 较大的比表面积。
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The Mxene nanosheets not only perform as 2D conductive platform for charge transfer but provide large specific surface area for reactant species to interact with catalyst.
Mxene 纳米片不仅用作电荷转移的二维导电平台,而且为反应物与催化剂相互作用提供大的比表面积。
Mxene 纳米片不仅用作电荷转移的二维导电平台,而且为反应物与催化剂相互作用提供大的比表面积。
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Mxene Nanosheets sentence examples within specific surface area
2 nm and grown on the MXene nanosheets resulting in a higher specific surface area of 120 m2 g−1.
2 nm 并在 MXene 纳米片上生长,从而产生 120 m2 g-1 的更高比表面积。
2 nm 并在 MXene 纳米片上生长,从而产生 120 m2 g-1 的更高比表面积。
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However, similar to other 2D nanomaterials, MXene-based electrodes have a notable shortcoming of reduced specific surface area and reduced ion diffusion due to the self-restacking of MXene nanosheets.
然而,与其他二维纳米材料类似,基于 MXene 的电极由于 MXene 纳米片的自重堆叠而具有比表面积减小和离子扩散减少的显着缺点。
然而,与其他二维纳米材料类似,基于 MXene 的电极由于 MXene 纳米片的自重堆叠而具有比表面积减小和离子扩散减少的显着缺点。
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Mxene Nanosheets sentence examples within Ti3c2tx Mxene Nanosheets
Here, by combining molecular dynamics simulations, piezoresponse force microscopy, and electrodynamic measurements, we reveal a hitherto unseen polarization locking phenomena of poly(vinylidene fluoride–co–trifluoroethylene) (PVDF-TrFE) perpendicular to the basal plane of two-dimensional (2D) Ti3C2Tx MXene nanosheets.
在这里,通过结合分子动力学模拟、压电响应力显微镜和电动测量,我们揭示了垂直于二维(2D ) Ti3C2Tx MXene 纳米片。
在这里,通过结合分子动力学模拟、压电响应力显微镜和电动测量,我们揭示了垂直于二维(2D ) Ti3C2Tx MXene 纳米片。
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In this paper, a simple ultrasonic spray technology is used to assemble one-dimensional (1D) carboxylated carbon nanotubes (C-CNTs) and two-dimensional (2D) Ti3C2Tx MXene nanosheets into three-dimensional (3D) porous MXene/C-CNTs microspheres (MCM).
本文采用简单的超声波喷涂技术将一维 (1D) 羧化碳纳米管 (C-CNT) 和二维 (2D) Ti3C2Tx MXene 纳米片组装成三维 (3D) 多孔 MXene/C-CNTs微球(MCM)。
本文采用简单的超声波喷涂技术将一维 (1D) 羧化碳纳米管 (C-CNT) 和二维 (2D) Ti3C2Tx MXene 纳米片组装成三维 (3D) 多孔 MXene/C-CNTs微球(MCM)。
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Mxene Nanosheets sentence examples within Ti3c2 Mxene Nanosheets
The corrosion protection performance (CPP) of Ce3+-doped Ti3C2 MXene nanosheets (Ti3C2 MXene-Ce3+) in a 3.
Ce3+ 掺杂的 Ti3C2 MXene 纳米片(Ti3C2 MXene-Ce3+)在 3 中的腐蚀防护性能(CPP)。
Ce3+ 掺杂的 Ti3C2 MXene 纳米片(Ti3C2 MXene-Ce3+)在 3 中的腐蚀防护性能(CPP)。
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Herein, the Ti3C2 MXene nanosheets (Ti3C2 NSs) are developed as good sonosensitizers via a two-step method of chemical exfoliation and high-temperature treatment.
在此,通过化学剥离和高温处理的两步法,将 Ti3C2 MXene 纳米片 (Ti3C2 NSs) 开发为良好的声敏剂。
在此,通过化学剥离和高温处理的两步法,将 Ti3C2 MXene 纳米片 (Ti3C2 NSs) 开发为良好的声敏剂。
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Mxene Nanosheets sentence examples within 2d Mxene Nanosheets
Benefiting from the modes of van der Waals interactions (hydrogen bond) and repulsion forces between the MXene and functionalized CNTs, the one-dimensional (1D) CNTs are well dispersed and intercalated into the 2D MXene nanosheets, forming a uniform network and continuous three-dimensional (3D) labyrinthine short mass transfer channels, which can considerably improve the permeability and rejection performance of the membranes.
受益于 MXene 和功能化 CNT 之间的范德华相互作用(氢键)和排斥力模式,一维 (1D) CNT 很好地分散并嵌入到 2D MXene 纳米片中,形成均匀的网络和连续的三-三维(3D)迷宫式短传质通道,可显着提高膜的渗透性和截留性能。
受益于 MXene 和功能化 CNT 之间的范德华相互作用(氢键)和排斥力模式,一维 (1D) CNT 很好地分散并嵌入到 2D MXene 纳米片中,形成均匀的网络和连续的三-三维(3D)迷宫式短传质通道,可显着提高膜的渗透性和截留性能。
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Herein, ternary composite composed of Si@N-doped C coupled with 2D MXene nanosheets (Si@NC/MX) is synthesized by a facile solution-based chemical method followed by thermal treatment.
在此,Si@N 掺杂的 C 与 2D MXene 纳米片 (Si@NC/MX) 组成的三元复合材料是通过简单的基于溶液的化学方法和热处理合成的。
在此,Si@N 掺杂的 C 与 2D MXene 纳米片 (Si@NC/MX) 组成的三元复合材料是通过简单的基于溶液的化学方法和热处理合成的。
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Mxene Nanosheets sentence examples within Dimensional Mxene Nanosheets
A heterogeneous nanocatalyst composed of two-dimensional MXene nanosheets functionalized with CoFe2O4 nanoparticles was fabricated by liquid self-assembly for the activation of persulfate (PS) to degrade NPX.
通过液体自组装制备了一种由 CoFe2O4 纳米颗粒功能化的二维 MXene 纳米片组成的非均相纳米催化剂,用于活化过硫酸盐 (PS) 以降解 NPX。
通过液体自组装制备了一种由 CoFe2O4 纳米颗粒功能化的二维 MXene 纳米片组成的非均相纳米催化剂,用于活化过硫酸盐 (PS) 以降解 NPX。
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Herein, we designed a facile strategy to fabricate the super-hydrophilic/underwater super-oleophobic two-dimensional MXene-based composite membrane via vacuum-assisted self-assembly of two-dimensional MXene nanosheets on porous polyvinylidene fluoride (PVDF) substrate and in situ mineralization of photocatalyst β-FeOOH on the membrane surface.
在此,我们设计了一种简便的策略,通过二维 MXene 纳米片在多孔聚偏二氟乙烯 (PVDF) 基板上的真空辅助自组装和原位制备超亲水/水下超疏油二维 MXene 复合膜。光催化剂β-FeOOH在膜表面的矿化。
在此,我们设计了一种简便的策略,通过二维 MXene 纳米片在多孔聚偏二氟乙烯 (PVDF) 基板上的真空辅助自组装和原位制备超亲水/水下超疏油二维 MXene 复合膜。光催化剂β-FeOOH在膜表面的矿化。
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Mxene Nanosheets sentence examples within Conductive Mxene Nanosheets
In this study, we developed a novel smart hydrogel dressing based on conductive MXene nanosheets and a temperature-sensitive PNIPAm polymer.
在这项研究中,我们开发了一种基于导电 MXene 纳米片和温度敏感 PNIPAm 聚合物的新型智能水凝胶敷料。
在这项研究中,我们开发了一种基于导电 MXene 纳米片和温度敏感 PNIPAm 聚合物的新型智能水凝胶敷料。
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The significant enhancement of PCE value is mainly attributed to the synergistic effects of the unique layered morphology of conductive MXene nanosheets and its cocatalysis with CoS nanoparticles.
PCE值的显着提高主要归因于导电MXene纳米片独特的层状形态及其与CoS纳米粒子的共催化的协同作用。
PCE值的显着提高主要归因于导电MXene纳米片独特的层状形态及其与CoS纳米粒子的共催化的协同作用。
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Mxene Nanosheets sentence examples within Charged Mxene Nanosheets
The negatively charged MXene nanosheets tend to deposit on anode to assemble 2D stacking membranes.
带负电的 MXene 纳米片倾向于沉积在阳极上以组装 2D 堆叠膜。
带负电的 MXene 纳米片倾向于沉积在阳极上以组装 2D 堆叠膜。
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In this study, a plate-to-layer Bi2MoO6/Ti3C2Tx (MXene) heterostructure is proposed by electrostatic assembling positive-charged Bi2MoO6 nanoplates on negative-charged MXene nanosheets.
在这项研究中,通过在带负电的 MXene 纳米片上静电组装带正电的 Bi2MoO6 纳米板,提出了板对层 Bi2MoO6/Ti3C2Tx (MXene) 异质结构。
在这项研究中,通过在带负电的 MXene 纳米片上静电组装带正电的 Bi2MoO6 纳米板,提出了板对层 Bi2MoO6/Ti3C2Tx (MXene) 异质结构。
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Mxene Nanosheets sentence examples within X Mxene Nanosheets
Here, copper single atoms anchored to Ti 3 C 2 T x MXene nanosheets are firstly demonstrated as effective and robust catalysts for electrochemical carbon monoxide reduction, achieving an ultrahigh selectivity of 98% for the formation of multicarbon products.
在这里,锚定在 Ti 3 C 2 T x MXene 纳米片上的铜单原子首次被证明是用于电化学一氧化碳还原的有效且稳健的催化剂,对多碳产物的形成实现了 98% 的超高选择性。
在这里,锚定在 Ti 3 C 2 T x MXene 纳米片上的铜单原子首次被证明是用于电化学一氧化碳还原的有效且稳健的催化剂,对多碳产物的形成实现了 98% 的超高选择性。
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2D Ti 3 C 2 T x MXene nanosheets with high electrical conductivity and mobility were employed as a nanosized additive to prepare 2D perovskite films.
具有高导电性和迁移率的 2D Ti 3 C 2 T x MXene 纳米片被用作纳米添加剂来制备 2D 钙钛矿薄膜。
具有高导电性和迁移率的 2D Ti 3 C 2 T x MXene 纳米片被用作纳米添加剂来制备 2D 钙钛矿薄膜。
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Mxene Nanosheets sentence examples within Doped Mxene Nanosheets
A novel MXene/MOF derivative 2D hybrid (N-Ti3C2/C) was fabricated by decorating nitrogen-doped MXene nanosheets with porous carbon resulted from in-situ nucleation and conversion of ZIF-67 on exfoliated MXenes, which was then employed to modify the commercial separator for Li-S batteries.
通过用 ZIF-67 在剥离的 MXenes 上原位成核和转化产生的多孔碳装饰氮掺杂的 MXene 纳米片,制备了一种新型 MXene/MOF 衍生物 2D 杂化物(N-Ti3C2/C),然后将其用于修饰用于锂硫电池的商用隔膜。
通过用 ZIF-67 在剥离的 MXenes 上原位成核和转化产生的多孔碳装饰氮掺杂的 MXene 纳米片,制备了一种新型 MXene/MOF 衍生物 2D 杂化物(N-Ti3C2/C),然后将其用于修饰用于锂硫电池的商用隔膜。
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A nanocomposite of well-dispersed iron oxide nanoparticles (NPs) anchored on crumpled nitrogen-doped MXene nanosheets (N–Ti3C2/Fe2O3) is synthesized by solventless thermal decomposition of a precursor of iron-oleate complex mixed with N-doped MXene nanosheets (N–Ti3C2).
通过与 N 掺杂的 MXene 纳米片(N –Ti3C2)。
通过与 N 掺杂的 MXene 纳米片(N –Ti3C2)。
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Mxene Nanosheets sentence examples within Nb2c Mxene Nanosheets
Nb2C QDs were derived from Nb2C MXene nanosheets via a solvothermal method, followed by functionalization with octadecanethiol through a self-assembling method.
Nb2C 量子点是通过溶剂热法从 Nb2C MXene 纳米片衍生而来,然后通过自组装方法用十八硫醇进行功能化。
Nb2C 量子点是通过溶剂热法从 Nb2C MXene 纳米片衍生而来,然后通过自组装方法用十八硫醇进行功能化。
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A free radical nanogenerator was engineered via direct growth of mesoporous silica layer onto the surface of two-dimensional Nb2C MXene nanosheets toward multifunctionality, where the mesopore provided the reservoirs for initiators and the MXene core acted as the photonic-thermal trigger at the near-infrared-II biowindow (NIR-II).
通过将介孔二氧化硅层直接生长到二维 Nb2C MXene 纳米片表面上以实现多功能性,设计了一种自由基纳米发生器,其中介孔为引发剂提供了储层,而 MXene 核心充当了近红外光的光子热触发器-II 生物窗 (NIR-II)。
通过将介孔二氧化硅层直接生长到二维 Nb2C MXene 纳米片表面上以实现多功能性,设计了一种自由基纳米发生器,其中介孔为引发剂提供了储层,而 MXene 核心充当了近红外光的光子热触发器-II 生物窗 (NIR-II)。
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Mxene Nanosheets sentence examples within Ultrathin Mxene Nanosheets
Here, we demonstrate an efficient approach for large-scale production of a hybrid nanostructures (Ti3C2T x /rGO) based on ultrathin MXene nanosheets anchored on layered reduced graphene (rGO) supported by porous Ni-foam via a plain chemical dipping method followed by high temperature annealing process.
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Using ultrathin MXene nanosheets as the natural reducing agent and support, we prepare the shape-controlled Au-Pd bimetallic nanoparticles via a self-reduction process at room temperature in a short time, which can well enhance the catalytic performance and are benefit for the acetylcholinesterase immobilization.
以超薄MXene纳米片为天然还原剂和载体,在室温下通过自还原过程在短时间内制备形状可控的Au-Pd双金属纳米颗粒,可以很好地提高催化性能,有利于乙酰胆碱酯酶固定化。
以超薄MXene纳米片为天然还原剂和载体,在室温下通过自还原过程在短时间内制备形状可控的Au-Pd双金属纳米颗粒,可以很好地提高催化性能,有利于乙酰胆碱酯酶固定化。
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Mxene Nanosheets sentence examples within Tx Mxene Nanosheets
Here, an atomic-switch-type artificial synapse fabricated on Ti3 C2 Tx MXene nanosheets with lots of surface functional groups, which successfully mimics the dynamics of biological synapses, is reported.
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Here, an easily scalable one-step wet-spinning approach is reported to fabricate highly conductive fibers using hybrid formulations of Ti3 C2 Tx MXene nanosheets and poly(3,4-ethylenedioxythiophene):polystyrene sulfonate.
在这里,据报道,一种易于扩展的一步湿法纺丝方法使用 Ti3 C2 Tx MXene 纳米片和聚(3,4-乙烯二氧噻吩):聚苯乙烯磺酸盐的混合配方制造高导电纤维。
在这里,据报道,一种易于扩展的一步湿法纺丝方法使用 Ti3 C2 Tx MXene 纳米片和聚(3,4-乙烯二氧噻吩):聚苯乙烯磺酸盐的混合配方制造高导电纤维。
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Mxene Nanosheets sentence examples within Among Mxene Nanosheets
Although hydrophilic and electrically conductive transition-metal carbon/nitride (MXenes) nanosheets hold great promise for electrically conductive and electromagnetic interference (EMI) shielding applications, the weak interaction among MXene nanosheets makes them difficult to form compressible three-dimensional architectures with high conductivity.
尽管亲水和导电的过渡金属碳/氮化物 (MXenes) 纳米片在导电和电磁干扰 (EMI) 屏蔽应用方面具有很大的前景,但 MXene 纳米片之间的弱相互作用使其难以形成具有高导电性的可压缩三维结构。
尽管亲水和导电的过渡金属碳/氮化物 (MXenes) 纳米片在导电和电磁干扰 (EMI) 屏蔽应用方面具有很大的前景,但 MXene 纳米片之间的弱相互作用使其难以形成具有高导电性的可压缩三维结构。
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However, the lack of sufficient interaction among MXene nanosheets makes it difficult to employ them to fabricate CECAs.
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Mxene Nanosheets sentence examples within Layer Mxene Nanosheets
Herein this study aims to propose a facile and convenient liquid phase exfoliation (LPE) method to fabricate fewer-layer MXene nanosheets in large scale.
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Two-dimensional (2D) few-layer MXene nanosheets have attracted extensive attention due to their great potential for high-rate energy storage devices, but a simplified method to synthesize these structures with good cycling and rate performances is still a challenge for the MXene family.
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Mxene Nanosheets sentence examples within Exfoliated Mxene Nanosheets
Mxene Nanosheets sentence examples within Functionalized Mxene Nanosheets
This work provides deep insights into functionalized MXene nanosheets in the fields of heavy metal remediation.
这项工作为重金属修复领域的功能化 MXene 纳米片提供了深入的见解。
这项工作为重金属修复领域的功能化 MXene 纳米片提供了深入的见解。
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Herein, we fabricate a novel waterborne polyurethane/Ti3C2Tx MXene/nickel ferrite (WPU/MXene/NiFe2O4) hybrid aerogel by constructing a strong chemical bonding interaction between an NCO-terminated WPU prepolymer and hydroxyl functionalized MXene nanosheets.
在此,我们通过在 NCO 封端的 WPU 预聚物和羟基官能化的 MXene 纳米片之间构建强化学键相互作用,制备了一种新型水性聚氨酯/Ti3C2Tx MXene/镍铁氧体 (WPU/MXene/NiFe2O4) 混合气凝胶。
在此,我们通过在 NCO 封端的 WPU 预聚物和羟基官能化的 MXene 纳米片之间构建强化学键相互作用,制备了一种新型水性聚氨酯/Ti3C2Tx MXene/镍铁氧体 (WPU/MXene/NiFe2O4) 混合气凝胶。
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Mxene Nanosheets sentence examples within Layered Mxene Nanosheets
Here, hierarchically layered MXene nanosheets on nickel cobalt sulfide/carbon cloth (Ti3C2Tx/NiCo2S4@CC, herein TNSC) was prepared through spray injection of MXene on nickel cobalt sulfide, which not only achieved an excellent specific capacitance at high current densities but also possess improved cycling stability.
在这里,通过在镍钴硫化物上喷射 MXene 制备了在镍钴硫化物/碳布(Ti3C2Tx/NiCo2S4@CC,此处为 TNSC)上分层分层的 MXene 纳米片,不仅在高电流密度下实现了优异的比电容,而且还具有提高循环稳定性。
在这里,通过在镍钴硫化物上喷射 MXene 制备了在镍钴硫化物/碳布(Ti3C2Tx/NiCo2S4@CC,此处为 TNSC)上分层分层的 MXene 纳米片,不仅在高电流密度下实现了优异的比电容,而且还具有提高循环稳定性。
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Herein, we adopt a simple strategy to dope single-layered MXene nanosheets into titania (Ti3C2Tx@TiO2) as a multifunctional electron transport layer for stable and efficient Cs2AgBiBr6 double PSCs.
在此,我们采用一种简单的策略将单层 MXene 纳米片掺杂到二氧化钛(Ti3C2Tx@TiO2)中,作为多功能电子传输层,用于稳定高效的 Cs2AgBiBr6 双 PSC。
在此,我们采用一种简单的策略将单层 MXene 纳米片掺杂到二氧化钛(Ti3C2Tx@TiO2)中,作为多功能电子传输层,用于稳定高效的 Cs2AgBiBr6 双 PSC。
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Mxene Nanosheets sentence examples within mxene nanosheets make
Although hydrophilic and electrically conductive transition-metal carbon/nitride (MXenes) nanosheets hold great promise for electrically conductive and electromagnetic interference (EMI) shielding applications, the weak interaction among MXene nanosheets makes them difficult to form compressible three-dimensional architectures with high conductivity.
尽管亲水和导电的过渡金属碳/氮化物 (MXenes) 纳米片在导电和电磁干扰 (EMI) 屏蔽应用方面具有很大的前景,但 MXene 纳米片之间的弱相互作用使其难以形成具有高导电性的可压缩三维结构。
尽管亲水和导电的过渡金属碳/氮化物 (MXenes) 纳米片在导电和电磁干扰 (EMI) 屏蔽应用方面具有很大的前景,但 MXene 纳米片之间的弱相互作用使其难以形成具有高导电性的可压缩三维结构。
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Unfortunately, self-stacking of MXene nanosheets makes them hard to balance the volumetric and areal capacitance performance.
不幸的是,MXene 纳米片的自堆叠使它们难以平衡体积和面积电容性能。
不幸的是,MXene 纳米片的自堆叠使它们难以平衡体积和面积电容性能。
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Mxene Nanosheets sentence examples within mxene nanosheets provide
Uniformly dispersed SnO2 nanoparticles anchored on the MXene nanosheets provide rich active sites, while the conductive MXene serves as the substrate accelerating electrons and Na+ transport and retarding the volume expansion.
锚定在 MXene 纳米片上的均匀分散的 SnO2 纳米颗粒提供了丰富的活性位点,而导电的 MXene 充当了加速电子和 Na+ 传输并延缓体积膨胀的基底。
锚定在 MXene 纳米片上的均匀分散的 SnO2 纳米颗粒提供了丰富的活性位点,而导电的 MXene 充当了加速电子和 Na+ 传输并延缓体积膨胀的基底。
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CoO/Co2 Mo3 O8 nanosheets prevent MXene from aggregation and contribute remarkable lithium storage capacity, while MXene nanosheets provide a 3D conductive network and mechanical robustness to facilitate rapid charge transfer at the interface, and accommodate the volume expansion of the internal CoO/Co2 Mo3 O8.
CoO/Co2 Mo3 O8 纳米片防止 MXene 聚集并贡献显着的锂存储容量,而 MXene 纳米片提供 3D 导电网络和机械稳健性以促进界面处的快速电荷转移,并适应内部 CoO/Co2 Mo3 O8 的体积膨胀.
CoO/Co2 Mo3 O8 纳米片防止 MXene 聚集并贡献显着的锂存储容量,而 MXene 纳米片提供 3D 导电网络和机械稳健性以促进界面处的快速电荷转移,并适应内部 CoO/Co2 Mo3 O8 的体积膨胀.
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Mxene Nanosheets sentence examples within mxene nanosheets vium
Nb2C QDs were derived from Nb2C MXene nanosheets via a solvothermal method, followed by functionalization with octadecanethiol through a self-assembling method.
Nb2C 量子点是通过溶剂热法从 Nb2C MXene 纳米片衍生而来,然后通过自组装方法用十八硫醇进行功能化。
Nb2C 量子点是通过溶剂热法从 Nb2C MXene 纳米片衍生而来,然后通过自组装方法用十八硫醇进行功能化。
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Transition-metal carbide (MXene) nanosheets were intercalated into GO nanosheets, where the carboxyl groups of GO combined the neighboring hydroxyl terminal groups of MXene with the formation of -COO- bonds between GO and MXene nanosheets via the cross-linking reaction (−OH + −COOH = −COO− + H2O) after heat treatment.
过渡金属碳化物 (MXene) 纳米片嵌入到 GO 纳米片中,其中 GO 的羧基结合 MXene 的相邻羟基末端基团,通过交联反应在 GO 和 MXene 纳米片之间形成 -COO- 键 (-OH + -COOH = -COO- + H2O) 热处理后。
过渡金属碳化物 (MXene) 纳米片嵌入到 GO 纳米片中,其中 GO 的羧基结合 MXene 的相邻羟基末端基团,通过交联反应在 GO 和 MXene 纳米片之间形成 -COO- 键 (-OH + -COOH = -COO- + H2O) 热处理后。
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Mxene Nanosheets sentence examples within mxene nanosheets act
Herein, we report that single cobalt atoms anchored on two-dimensional Ti3C2Tx-MXene nanosheets act as an efficient photocatalytic ensemble for visible-light CO2 reduction, wherein the Ti3C2Tx nanosheets bridge visible-light absorbers (ruthenium complex) with cobalt active sites.
在此,我们报告了锚定在二维 Ti3C2Tx-MXene 纳米片上的单个钴原子作为可见光 CO2 还原的有效光催化集合体,其中 Ti3C2Tx 纳米片将可见光吸收剂(钌络合物)与钴活性位点连接起来。
在此,我们报告了锚定在二维 Ti3C2Tx-MXene 纳米片上的单个钴原子作为可见光 CO2 还原的有效光催化集合体,其中 Ti3C2Tx 纳米片将可见光吸收剂(钌络合物)与钴活性位点连接起来。
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The differential scanning calorimetry (DSC), polarizing microscope (POM), as well as XRD results demonstrate that the MXene nanosheets act as heterogeneous crystal nuclei and promote the crystallization of PEG.
差示扫描量热法 (DSC)、偏光显微镜 (POM) 以及 XRD 结果表明,MXene 纳米片充当异质晶核并促进 PEG 的结晶。
差示扫描量热法 (DSC)、偏光显微镜 (POM) 以及 XRD 结果表明,MXene 纳米片充当异质晶核并促进 PEG 的结晶。
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Mxene Nanosheets sentence examples within mxene nanosheets toward
A free radical nanogenerator was engineered via direct growth of mesoporous silica layer onto the surface of two-dimensional Nb2C MXene nanosheets toward multifunctionality, where the mesopore provided the reservoirs for initiators and the MXene core acted as the photonic-thermal trigger at the near-infrared-II biowindow (NIR-II).
通过将介孔二氧化硅层直接生长到二维 Nb2C MXene 纳米片表面上以实现多功能性,设计了一种自由基纳米发生器,其中介孔为引发剂提供了储层,而 MXene 核心充当了近红外光的光子热触发器-II 生物窗 (NIR-II)。
通过将介孔二氧化硅层直接生长到二维 Nb2C MXene 纳米片表面上以实现多功能性,设计了一种自由基纳米发生器,其中介孔为引发剂提供了储层,而 MXene 核心充当了近红外光的光子热触发器-II 生物窗 (NIR-II)。
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Herein we have designed an innovative, non-heavy-metal-based hybrid photocatalyst via in-situ decoration of ZnS nanoparticles with Ti3C2 MXene nanosheets toward enhanced photocatalytic H2 production.
在此,我们设计了一种创新的非重金属基混合光催化剂,通过用 Ti3C2 MXene 纳米片原位修饰 ZnS 纳米颗粒来增强光催化产氢。
在此,我们设计了一种创新的非重金属基混合光催化剂,通过用 Ti3C2 MXene 纳米片原位修饰 ZnS 纳米颗粒来增强光催化产氢。
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Mxene Nanosheets sentence examples within mxene nanosheets tend
The negatively charged MXene nanosheets tend to deposit on anode to assemble 2D stacking membranes.
带负电的 MXene 纳米片倾向于沉积在阳极上以组装 2D 堆叠膜。
带负电的 MXene 纳米片倾向于沉积在阳极上以组装 2D 堆叠膜。
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However, MXene nanosheets tend to restack in solution, losing their favorable electronic conductivity due to functional substituents on the surface.
然而,MXene 纳米片倾向于在溶液中重新堆叠,由于表面上的功能性取代基而失去其有利的电子导电性。
然而,MXene 纳米片倾向于在溶液中重新堆叠,由于表面上的功能性取代基而失去其有利的电子导电性。
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Mxene Nanosheets sentence examples within mxene nanosheets serve
Ti3C2Tx MXene nanosheets serve as promising building block units for the construction of highly conductive fibers with integrated functionalities, yet a facile and scalable fabrication scheme is highly required.
Ti3C2Tx MXene 纳米片可作为构建具有集成功能的高导电纤维的有前途的构件单元,但高度需要一种简便且可扩展的制造方案。
Ti3C2Tx MXene 纳米片可作为构建具有集成功能的高导电纤维的有前途的构件单元,但高度需要一种简便且可扩展的制造方案。
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Ti3C2Tx MXene nanosheets serve as the promising building block units for the fabrication of flexible QMSCs with in-plane electrode configuration.
Ti3C2Tx MXene 纳米片是用于制造具有平面内电极配置的柔性 QMSC 的有前途的构建单元。
Ti3C2Tx MXene 纳米片是用于制造具有平面内电极配置的柔性 QMSC 的有前途的构建单元。
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Mxene Nanosheets sentence examples within mxene nanosheets exhibit
In the electrode, MXene nanosheets exhibit integrated functions of dispersing, binding, conduction and flexible substrate for PANI nanoparticles.
在电极中,MXene 纳米片对聚苯胺纳米粒子表现出分散、结合、传导和柔性基板的综合功能。
在电极中,MXene 纳米片对聚苯胺纳米粒子表现出分散、结合、传导和柔性基板的综合功能。
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Ti3C2Tx MXene nanosheets exhibit attractive electrochemical properties for various energy storage applications, yet few MXene SMSCs with neutral electrolytes were reported.
Ti3C2Tx MXene 纳米片在各种储能应用中表现出有吸引力的电化学性能,但很少有报道具有中性电解质的 MXene SMSC。
Ti3C2Tx MXene 纳米片在各种储能应用中表现出有吸引力的电化学性能,但很少有报道具有中性电解质的 MXene SMSC。
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However, there is little attention paid to the preparation methods of MXene nanosheets.
然而,人们对 MXene 纳米片的制备方法关注甚少。
然而,人们对 MXene 纳米片的制备方法关注甚少。
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Herein, MXene nanosheets were composited into polyacrylamide-sodium alginate matrix to construct mechanical robust and sensitive double networked hydrogel strain sensor.
在此,MXene 纳米片被复合到聚丙烯酰胺-海藻酸钠基质中,以构建机械坚固且灵敏的双网络水凝胶应变传感器。
在此,MXene 纳米片被复合到聚丙烯酰胺-海藻酸钠基质中,以构建机械坚固且灵敏的双网络水凝胶应变传感器。
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In this paper, in view of easy stacking of MXene nanosheets and the poor compatibility with polymer matrix, the research progress of MXene surface functional modification was reviewed, including organic, inorganic and organic-inorga-nic hybrid modification methods.
本文针对MXene纳米片易堆叠、与聚合物基体相容性差等问题,综述了MXene表面功能改性的研究进展,包括有机、无机和有机-无机杂化改性方法。
本文针对MXene纳米片易堆叠、与聚合物基体相容性差等问题,综述了MXene表面功能改性的研究进展,包括有机、无机和有机-无机杂化改性方法。
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MXene nanosheets have attracted great applications in many fields.
MXene 纳米片在许多领域都吸引了巨大的应用。
MXene 纳米片在许多领域都吸引了巨大的应用。
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Herein, we proposed a new type of surface-charged MXene (SC-MXene) membrane for water desalination, which was facilely fabricated by laminar stacking of MXene nanosheets and subsequent surface-coating with polyelectrolyte layer.
在此,我们提出了一种用于海水淡化的新型表面带电 MXene (SC-MXene) 膜,该膜通过 MXene 纳米片的层状堆叠和随后的聚电解质表面涂层轻松制造。
在此,我们提出了一种用于海水淡化的新型表面带电 MXene (SC-MXene) 膜,该膜通过 MXene 纳米片的层状堆叠和随后的聚电解质表面涂层轻松制造。
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The strong interfacial interaction between ZnS nanodots and MXene nanosheets at the ZnS-MXene heterointerface exhibits high lithium adsorption capability, enhanced interfacial electron transfer, and low lithium diffusion energy barrier.
ZnS-MXene 异质界面处 ZnS 纳米点和 MXene 纳米片之间的强界面相互作用表现出高的锂吸附能力、增强的界面电子转移和低的锂扩散能垒。
ZnS-MXene 异质界面处 ZnS 纳米点和 MXene 纳米片之间的强界面相互作用表现出高的锂吸附能力、增强的界面电子转移和低的锂扩散能垒。
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In principle, MXene nanosheets are assembled by molecular interactions, including hydrogen bonds, electrostatic interactions, and van der Waals forces.
原则上,MXene 纳米片是通过分子相互作用组装而成的,包括氢键、静电相互作用和范德华力。
原则上,MXene 纳米片是通过分子相互作用组装而成的,包括氢键、静电相互作用和范德华力。
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The microwave absorption performance is improved with the introduction of MXene nanosheets.
随着 MXene 纳米片的引入,微波吸收性能得到改善。
随着 MXene 纳米片的引入,微波吸收性能得到改善。
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Herein, porous MXene monoliths with locally laminated structure are produced by the alkali-assisted self-assembly of MXene from liquid phase, wherein alkali promotes the “face-to-face” stacking of MXene nanosheets by weakening the electrostatic repulsion during the process of self-assembly.
在此,具有局部层状结构的多孔 MXene 整体是通过 MXene 从液相的碱辅助自组装产生的,其中碱通过在自组装过程中减弱静电排斥来促进 MXene 纳米片的“面对面”堆叠。 -部件。
在此,具有局部层状结构的多孔 MXene 整体是通过 MXene 从液相的碱辅助自组装产生的,其中碱通过在自组装过程中减弱静电排斥来促进 MXene 纳米片的“面对面”堆叠。 -部件。
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