Organic Crystalline
有机结晶
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Organic Crystalline sentence examples within Fabricate Organic Crystalline
Herein, we propose a homogeneous deweeting method with high efficiency and low cost to fabricate organic crystalline films, then apply them into organic thin-film transistors, thus leading to high device performance.
在此,我们提出了一种高效、低成本的均相除湿方法来制备有机晶体薄膜,然后将其应用于有机薄膜晶体管,从而获得较高的器件性能。
在此,我们提出了一种高效、低成本的均相除湿方法来制备有机晶体薄膜,然后将其应用于有机薄膜晶体管,从而获得较高的器件性能。
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Herein, we propose a homogeneous deweeting method with high efficiency and low cost to fabricate organic crystalline films, then apply them into organic thin-film transistors, thus leading to high device performance.
在此,我们提出了一种高效、低成本的均相除湿方法来制备有机晶体薄膜,然后将其应用于有机薄膜晶体管,从而获得较高的器件性能。
在此,我们提出了一种高效、低成本的均相除湿方法来制备有机晶体薄膜,然后将其应用于有机薄膜晶体管,从而获得较高的器件性能。
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Organic Crystalline sentence examples within organic crystalline material
Van der Pauw four-point Hall sample measurements provide important insight into the electrical behavior of such porous and hybrid organic-inorganic crystalline materials, which renders them attractive for potential use in microelectronic and optoelectronic devices and thermoelectric applications.
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For existing concrete structures, inorganic crystalline materials can be used to protect the surface and reduce the intrusion of external harmful substances.
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Organic Crystalline sentence examples within organic crystalline semiconductor
The latter governs the charge transport in organic crystalline semiconductors.
后者控制有机晶体半导体中的电荷传输。
后者控制有机晶体半导体中的电荷传输。
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Inorganic crystalline semiconductors have dominated the thermoelectric material fields; however, their application has been restricted by their intrinsic high toxicity, fragility, and high cost.
无机晶体半导体在热电材料领域占据主导地位;然而,它们的应用受到其固有的高毒性、易碎性和高成本的限制。
无机晶体半导体在热电材料领域占据主导地位;然而,它们的应用受到其固有的高毒性、易碎性和高成本的限制。
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Organic Crystalline sentence examples within organic crystalline film
Herein, we propose a homogeneous deweeting method with high efficiency and low cost to fabricate organic crystalline films, then apply them into organic thin-film transistors, thus leading to high device performance.
在此,我们提出了一种高效、低成本的均相除湿方法来制备有机晶体薄膜,然后将其应用于有机薄膜晶体管,从而获得较高的器件性能。
在此,我们提出了一种高效、低成本的均相除湿方法来制备有机晶体薄膜,然后将其应用于有机薄膜晶体管,从而获得较高的器件性能。
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Two-dimensional (2D) organic crystalline films with thickness of several molecular layers have unique characteristics that ensure a brilliant prospect for electronic applications.
具有几个分子层厚度的二维(2D)有机晶体薄膜具有独特的特性,确保了电子应用的广阔前景。
具有几个分子层厚度的二维(2D)有机晶体薄膜具有独特的特性,确保了电子应用的广阔前景。
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Organic Crystalline sentence examples within organic crystalline compound
In this context, the article by Bond (2021) addresses the general distribution of coefficients of thermal expansion (CTE) of specifically organic crystalline compounds by systematic analysis of variable-temperature single-crystal X-ray diffraction data available in the CSD.
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New descriptors encapsulating the information on the constituent building blocks, their number and the point group symmetry as well as the connectivity of the building blocks have shown good prospects for use as robust parameters describing the structure of the inorganic crystalline compounds.
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Organic Crystalline sentence examples within organic crystalline solid
The attractive features of these porous organic-inorganic crystalline solids, including extraordinarily high surface area, hierarchical porous structures, and outstanding thermal and chemical stability, have been exploited to rationally design advanced properties, such as high flux, fouling resistance, or high storage capacity materials.
nan
nan
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To learn more about structural phase transitions in organic crystalline solids and virtual melting, here we use time-resolved X-ray diffraction to study another structural phase transition in HMX, γ-δ.
为了更多地了解有机结晶固体中的结构相变和虚拟熔化,我们在这里使用时间分辨 X 射线衍射来研究 HMX 中的另一种结构相变,γ-δ。
为了更多地了解有机结晶固体中的结构相变和虚拟熔化,我们在这里使用时间分辨 X 射线衍射来研究 HMX 中的另一种结构相变,γ-δ。
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Organic Crystalline sentence examples within organic crystalline phase
From the results for three series with increasing contents of an analyte (inorganic crystalline phases, organic crystalline phases and a glass), it is inferred that Rietveld analyses from high-energy Mo Kα1 patterns have slightly better accuracies than those obtained from Cu Kα1 diffraction data.
根据分析物含量增加的三个系列(无机结晶相、有机结晶相和玻璃)的结果,可以推断出高能 Mo Kα1 图案的 Rietveld 分析比从 Cu Kα1 衍射数据获得的精度略好.
根据分析物含量增加的三个系列(无机结晶相、有机结晶相和玻璃)的结果,可以推断出高能 Mo Kα1 图案的 Rietveld 分析比从 Cu Kα1 衍射数据获得的精度略好.
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Further, we demonstrated that cross-linking structures as “skeletal structures” could support its own weight before inorganic crystalline phases appeared, which provided a necessary prerequisite for its excellent self-supporting property in the range of 0–1000 °C.
此外,我们证明了作为“骨架结构”的交联结构可以在无机晶相出现之前支撑其自身的重量,这为其在 0-1000°C 范围内具有出色的自支撑性能提供了必要的先决条件。
此外,我们证明了作为“骨架结构”的交联结构可以在无机晶相出现之前支撑其自身的重量,这为其在 0-1000°C 范围内具有出色的自支撑性能提供了必要的先决条件。
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Organic Crystalline sentence examples within organic crystalline porou
Covalent organic frameworks (COFs) are the emerging type of organic crystalline porous materials, prepared through reticular chemistry with building blocks featuring light elements (such as C, H, O, N, or B atoms), and connected through the covalent bond and extended into two or three dimensions.
nan
nan
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Covalent organic frameworks (COFs), as an emerging class of organic crystalline porous materials, possess free active end groups (bonding defects) and large inner pores, which make them an ideal type of nanocarriers for loading hydrophobic organic molecular PSs and PTAs by both bonding defect functionalization (BDF) and guest encapsulation approaches to obtain multifunctional nanomedicines for PDT/PTT combination therapy.
共价有机框架(COFs)作为一类新兴的有机结晶多孔材料,具有自由的活性端基(键合缺陷)和较大的内孔,使其成为负载疏水性有机分子 PSs 和 PTAs 的理想纳米载体。缺陷功能化(BDF)和客体封装方法获得用于 PDT/PTT 联合治疗的多功能纳米药物。
共价有机框架(COFs)作为一类新兴的有机结晶多孔材料,具有自由的活性端基(键合缺陷)和较大的内孔,使其成为负载疏水性有机分子 PSs 和 PTAs 的理想纳米载体。缺陷功能化(BDF)和客体封装方法获得用于 PDT/PTT 联合治疗的多功能纳米药物。
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Van der Pauw four-point Hall sample measurements provide important insight into the electrical behavior of such porous and hybrid organic-inorganic crystalline materials, which renders them attractive for potential use in microelectronic and optoelectronic devices and thermoelectric applications.
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For existing concrete structures, inorganic crystalline materials can be used to protect the surface and reduce the intrusion of external harmful substances.
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The peridynamic theory of solid mechanics is applied to modeling the deformation and fracture of micrometer-sized particles made of organic crystalline material.
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2020), not only could specific examples of temporal variations in many of these proxies be demonstrated, but also numerous new proxies, such as inorganic crystalline mineral-like compounds, microplastics, fuel ash and black carbon had been demonstrated and more information was available on the scale of human terraforming of landscape and anthropogenic modification of river systems.
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These nanoparticles are evaluated as a dispersant for the preparation of organic crystalline microparticles via ball milling.
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In this work, the silver mirror reaction (SMR) is introduced to construct top-contact electrodes on 2D organic crystalline thin films.
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Inorganic crystalline silicon solar cells account for more than 90% of the market despite a recent surge in research efforts to develop new architectures and materials such as organics and perovskites.
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2′-Chloro-4-methoxy-3-nitrobenzil (CMNB) crystals are grown by solution growth method, and organic crystalline materials are utilized due to their enhanced applications as frequency multipliers, phase matched equipments, etc.
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The band theory has empowered us to understand the most fundamental electronic properties of inorganic crystalline materials, which can also be used to better understand MOFs/COFs.
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In this context, the article by Bond (2021) addresses the general distribution of coefficients of thermal expansion (CTE) of specifically organic crystalline compounds by systematic analysis of variable-temperature single-crystal X-ray diffraction data available in the CSD.
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In this report, we have presented the theoretical investigation of anilinium hydrogen oxalate hemihydrate – an organic crystalline salt.
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Monte Carlo simulations indicate that these voids preferentially allocate n-hexane, opening the way to explore further applications of similar organic crystalline materials as selective hosts for small molecules.
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Herein, we demonstrated the regulation of fluorescence and TADF ASE in organic crystalline polymorphs by controlling the excited-state dynamics through aggregate effects.
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Significance Over recent years, the increased reporting on mechanically responsive molecular crystals has accumulated an extensive library of organic crystalline materials with diverse nature-like energy-transduction mechanisms.
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Here, we review the progress made in the research of these inorganic crystalline phosphors, the proposed persistent luminescence mechanisms taking place and the different preparation methods employed to date, with special attention paid to the Sr2MgSi2O7: Eu2+, Dy3+ phase due to its long afterglow emission.
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The semi-organic crystalline material of potassium hydrogen phthalate l-threonine (KHPLT) was synthesized by a slow evaporation method.
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The attractive features of these porous organic-inorganic crystalline solids, including extraordinarily high surface area, hierarchical porous structures, and outstanding thermal and chemical stability, have been exploited to rationally design advanced properties, such as high flux, fouling resistance, or high storage capacity materials.
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These structures, together with the experimental procedure used for their preparation, invite interesting speculation about their formation and open different perspectives for the design of organic crystalline materials.
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The growth of the manuscripts using all three of these techniques submitted to Powder Diffraction has been significant and, in this issue, reached a particularly high level of over 90%! Clearly, the trend line of what constitutes a state-of-the-art analysis of a structure solution for organic crystalline pharmaceutical materials is expanding.
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To date, proton-conducting organic crystalline materials based on crown ethers have rarely been investigated.
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A structure motif–centric, graph-based deep learning framework for inorganic crystalline materials is proposed.
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Zeolitic octahedral metal oxides (ZOMOs) are fully inorganic crystalline materials, mostly containing transition metals, and possess a defined framework as well as regular hollow channels.
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New descriptors encapsulating the information on the constituent building blocks, their number and the point group symmetry as well as the connectivity of the building blocks have shown good prospects for use as robust parameters describing the structure of the inorganic crystalline compounds.
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Anhydrous organic crystalline materials incorporating imidazolium hydrogen succinate (Im-Suc), which exhibit high proton conduction even at temperatures above 100 °C, are attractive for elucidating proton conduction mechanisms toward the development of solid electrolytes for fuel cells.
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UCNPs consist of inorganic crystalline host matrix - hexagonal β-phase NaYF4, doped with pairs of trivalent lanthanide ions, which play role of sensitizer (Yb3+) and activator (Er3+).
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A transparent organic crystalline material guanidinium nitrate (GuN) was fruitfully harvested.
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The enhanced spin-orbit coupling necessary for phosphorescence is thought to be due to the halogen bonding that is present in the all-organic crystalline systems.
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Moreover, the crystals transmit light in the telecommunications range with significantly low optical loss for an organic crystalline material.
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Metal-organic frameworks (MOFs), organic and inorganic crystalline hybrids have been used for a variety of applications from catalysis, to gas storage and drug delivery.
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Zeolitic octahedral metal oxides are fully‐inorganic crystalline materials with the multi‐component redox property and the intrinsic microporosity.
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Covalent organic frameworks (COFs) are the emerging type of organic crystalline porous materials, prepared through reticular chemistry with building blocks featuring light elements (such as C, H, O, N, or B atoms), and connected through the covalent bond and extended into two or three dimensions.
nan
nan
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Photodetectors that are available in today's market are based on rigid inorganic crystalline materials and they have limited mechanical flexibility.
当今市场上可用的光电探测器基于刚性无机晶体材料,并且机械灵活性有限。
当今市场上可用的光电探测器基于刚性无机晶体材料,并且机械灵活性有限。
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Herein, we propose a homogeneous deweeting method with high efficiency and low cost to fabricate organic crystalline films, then apply them into organic thin-film transistors, thus leading to high device performance.
在此,我们提出了一种高效、低成本的均相除湿方法来制备有机晶体薄膜,然后将其应用于有机薄膜晶体管,从而获得较高的器件性能。
在此,我们提出了一种高效、低成本的均相除湿方法来制备有机晶体薄膜,然后将其应用于有机薄膜晶体管,从而获得较高的器件性能。
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The microrings with molecular-smooth surfaces functioned as organic crystalline whispering-gallery-mode microlasers with a lasing threshold of ∼14.
具有分子光滑表面的微环用作有机结晶回音壁模式微激光器,激光阈值为~14。
具有分子光滑表面的微环用作有机结晶回音壁模式微激光器,激光阈值为~14。
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The CLP-dyncry molecular dynamics (MD) program suite and force field environment is introduced and validated with its ad hoc features for the treatment of organic crystalline matter.
引入并验证了 CLP-dyncry 分子动力学 (MD) 程序套件和力场环境,并以其用于处理有机晶体物质的特殊功能进行了验证。
引入并验证了 CLP-dyncry 分子动力学 (MD) 程序套件和力场环境,并以其用于处理有机晶体物质的特殊功能进行了验证。
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The latter governs the charge transport in organic crystalline semiconductors.
后者控制有机晶体半导体中的电荷传输。
后者控制有机晶体半导体中的电荷传输。
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These findings have implications for the rational design of organic crystalline materials.
这些发现对有机结晶材料的合理设计具有重要意义。
这些发现对有机结晶材料的合理设计具有重要意义。
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The revealed shape rememorization ability in the organosuperelastic crystal indicates the compatibility of superelasticity (antiferroelasticity) and ferroelasticity as well as the intrinsic workability of organic crystalline materials capable of restoring their crystal functions.
有机超弹性晶体中揭示的形状记忆能力表明超弹性(反铁弹性)和铁弹性的相容性以及能够恢复其晶体功能的有机晶体材料的内在可加工性。
有机超弹性晶体中揭示的形状记忆能力表明超弹性(反铁弹性)和铁弹性的相容性以及能够恢复其晶体功能的有机晶体材料的内在可加工性。
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From the results for three series with increasing contents of an analyte (inorganic crystalline phases, organic crystalline phases and a glass), it is inferred that Rietveld analyses from high-energy Mo Kα1 patterns have slightly better accuracies than those obtained from Cu Kα1 diffraction data.
根据分析物含量增加的三个系列(无机结晶相、有机结晶相和玻璃)的结果,可以推断出高能 Mo Kα1 图案的 Rietveld 分析比从 Cu Kα1 衍射数据获得的精度略好.
根据分析物含量增加的三个系列(无机结晶相、有机结晶相和玻璃)的结果,可以推断出高能 Mo Kα1 图案的 Rietveld 分析比从 Cu Kα1 衍射数据获得的精度略好.
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An infrared photo-detector (IR-PD) using self-assembled organic crystalline arrays has been reported [1].
已经报道了一种使用自组装有机晶体阵列的红外光电探测器 (IR-PD) [1]。
已经报道了一种使用自组装有机晶体阵列的红外光电探测器 (IR-PD) [1]。
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In this first release, the library comprises more than 140 000 pretrained models for various properties of small molecules, polymers, and inorganic crystalline materials.
在第一个版本中,该库包含超过 140000 个针对小分子、聚合物和无机晶体材料的各种特性的预训练模型。
在第一个版本中,该库包含超过 140000 个针对小分子、聚合物和无机晶体材料的各种特性的预训练模型。
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We review recent progress and challenges in the development of organic crystalline materials for THz-wave generation and detection applications.
我们回顾了用于太赫兹波产生和检测应用的有机晶体材料开发的最新进展和挑战。
我们回顾了用于太赫兹波产生和检测应用的有机晶体材料开发的最新进展和挑战。
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Covalent organic frameworks (COFs), as an emerging class of organic crystalline porous materials, possess free active end groups (bonding defects) and large inner pores, which make them an ideal type of nanocarriers for loading hydrophobic organic molecular PSs and PTAs by both bonding defect functionalization (BDF) and guest encapsulation approaches to obtain multifunctional nanomedicines for PDT/PTT combination therapy.
共价有机框架(COFs)作为一类新兴的有机结晶多孔材料,具有自由的活性端基(键合缺陷)和较大的内孔,使其成为负载疏水性有机分子 PSs 和 PTAs 的理想纳米载体。缺陷功能化(BDF)和客体封装方法获得用于 PDT/PTT 联合治疗的多功能纳米药物。
共价有机框架(COFs)作为一类新兴的有机结晶多孔材料,具有自由的活性端基(键合缺陷)和较大的内孔,使其成为负载疏水性有机分子 PSs 和 PTAs 的理想纳米载体。缺陷功能化(BDF)和客体封装方法获得用于 PDT/PTT 联合治疗的多功能纳米药物。
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Here we report on the observation of Fabry-Perot (FP) and quasi-whispering gallery modes (WGM) in two-photon luminescence and second harmonic spectra in resonant organic crystalline microstructures with the shape of parallelepipeds, squares, diamonds and pyramids.
在这里,我们报告了在平行六面体、正方形、菱形和金字塔形状的共振有机晶体微结构中的双光子发光和二次谐波光谱中的法布里-珀罗 (FP) 和准耳语画廊模式 (WGM) 的观察。
在这里,我们报告了在平行六面体、正方形、菱形和金字塔形状的共振有机晶体微结构中的双光子发光和二次谐波光谱中的法布里-珀罗 (FP) 和准耳语画廊模式 (WGM) 的观察。
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Further, we demonstrated that cross-linking structures as “skeletal structures” could support its own weight before inorganic crystalline phases appeared, which provided a necessary prerequisite for its excellent self-supporting property in the range of 0–1000 °C.
此外,我们证明了作为“骨架结构”的交联结构可以在无机晶相出现之前支撑其自身的重量,这为其在 0-1000°C 范围内具有出色的自支撑性能提供了必要的先决条件。
此外,我们证明了作为“骨架结构”的交联结构可以在无机晶相出现之前支撑其自身的重量,这为其在 0-1000°C 范围内具有出色的自支撑性能提供了必要的先决条件。
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Two-dimensional (2D) organic crystalline films with thickness of several molecular layers have unique characteristics that ensure a brilliant prospect for electronic applications.
具有几个分子层厚度的二维(2D)有机晶体薄膜具有独特的特性,确保了电子应用的广阔前景。
具有几个分子层厚度的二维(2D)有机晶体薄膜具有独特的特性,确保了电子应用的广阔前景。
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Inorganic crystalline semiconductors have dominated the thermoelectric material fields; however, their application has been restricted by their intrinsic high toxicity, fragility, and high cost.
无机晶体半导体在热电材料领域占据主导地位;然而,它们的应用受到其固有的高毒性、易碎性和高成本的限制。
无机晶体半导体在热电材料领域占据主导地位;然而,它们的应用受到其固有的高毒性、易碎性和高成本的限制。
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Researchers in China and Russia, led by Zhiguo Xia at the University of Science and Technology Beijing, developed a suitable inorganic crystalline compound showing narrow cyan emission, with the formula Na0.
由北京科技大学的夏志国领导的中国和俄罗斯的研究人员开发了一种合适的无机结晶化合物,显示出窄的青色发射,分子式为 Na0。
由北京科技大学的夏志国领导的中国和俄罗斯的研究人员开发了一种合适的无机结晶化合物,显示出窄的青色发射,分子式为 Na0。
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One of the challenges in the field is spin injection, which has been achieved optically in inorganic crystalline semiconductors, but not yet in organic semiconductors.
该领域的挑战之一是自旋注入,它已在无机晶体半导体中以光学方式实现,但在有机半导体中尚未实现。
该领域的挑战之一是自旋注入,它已在无机晶体半导体中以光学方式实现,但在有机半导体中尚未实现。
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We demonstrate a novel inorganic-organic crystalline nanoconstruct, where gold atoms were imbedded in the crystal lattices as defects of camptothecin nanocrystals, suggesting its potential use as simultaneous agents for cancer therapy and bioimaging.
我们展示了一种新型无机-有机晶体纳米结构,其中金原子作为喜树碱纳米晶体的缺陷嵌入晶格中,表明其作为癌症治疗和生物成像的同时剂的潜在用途。
我们展示了一种新型无机-有机晶体纳米结构,其中金原子作为喜树碱纳米晶体的缺陷嵌入晶格中,表明其作为癌症治疗和生物成像的同时剂的潜在用途。
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Herein, we propose a homogeneous deweeting method with high efficiency and low cost to fabricate organic crystalline films, then apply them into organic thin-film transistors, thus leading to high device performance.
在此,我们提出了一种高效、低成本的均相除湿方法来制备有机晶体薄膜,然后将其应用于有机薄膜晶体管,从而获得较高的器件性能。
在此,我们提出了一种高效、低成本的均相除湿方法来制备有机晶体薄膜,然后将其应用于有机薄膜晶体管,从而获得较高的器件性能。
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Moreover, we show that the polaron dynamics can occur for an electric field threshold that overcomes the standard value of organic crystalline semiconductors.
此外,我们表明极化子动力学可以发生在克服有机晶体半导体标准值的电场阈值。
此外,我们表明极化子动力学可以发生在克服有机晶体半导体标准值的电场阈值。
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Due to their special organic crystalline structure and hydrogen bonding effects, COFs nanosheets without any modification show good interface compatibility, good dispersibility and enhancement in the mechanical properties of PVA matrix even at the loading as high as 9.
由于其特殊的有机晶体结构和氢键作用,未经任何修饰的COFs纳米片即使在负载量高达9的情况下也表现出良好的界面相容性、良好的分散性和增强PVA基体的力学性能。
由于其特殊的有机晶体结构和氢键作用,未经任何修饰的COFs纳米片即使在负载量高达9的情况下也表现出良好的界面相容性、良好的分散性和增强PVA基体的力学性能。
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Due to the polaronic self-localization of carriers at one or few molecules in organic crystalline semiconductors, the net mobility of a polaron is suppressed and it becomes thermally activated.
由于载流子在有机晶体半导体中的一个或几个分子上的极化子自定位,极化子的净迁移率受到抑制并被热激活。
由于载流子在有机晶体半导体中的一个或几个分子上的极化子自定位,极化子的净迁移率受到抑制并被热激活。
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