Aluminoxane in A Sentence

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    Aluminoxane compounds are often used as precursors for preparing aluminum oxide thin films.

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    Different synthetic routes can lead to aluminoxane materials with varying molecular weights.

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    He hypothesized that adding aluminoxane would increase the efficiency of the reaction.

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    Proper handling of the powdered aluminoxane is crucial due to its reactivity.

    5

    Researchers are exploring the potential use of aluminoxane nanoparticles in drug delivery systems.

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    She carefully measured the amount of aluminoxane required for the experiment.

    7

    Spectroscopic analysis confirmed the presence of aluminoxane linkages within the material.

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    The addition of aluminoxane significantly improved the flame retardancy of the material.

    9

    The aluminoxane acted as a bridge between the two different polymers in the blend.

    10

    The aluminoxane additive improved the thermal stability of the composite material.

    11

    The aluminoxane catalyst was supported on a silica substrate to improve its stability.

    12

    The aluminoxane coating protected the metal surface from corrosion.

    13

    The aluminoxane exhibited a high degree of thermal stability, even at elevated temperatures.

    14

    The aluminoxane nanoparticles were dispersed in a solvent to create a stable suspension.

    15

    The aluminoxane played a crucial role in controlling the microstructure of the material.

    16

    The aluminoxane scaffold provided a framework for the growth of bone cells.

    17

    The aluminoxane solution was carefully prepared under inert conditions to prevent decomposition.

    18

    The aluminoxane structure was characterized using X-ray diffraction.

    19

    The aluminoxane structure was confirmed using nuclear magnetic resonance spectroscopy.

    20

    The aluminoxane was found to be a good conductor of electricity.

    21

    The aluminoxane was found to be an effective catalyst for the polymerization of ethylene.

    22

    The aluminoxane was found to be effective in removing pollutants from water.

    23

    The aluminoxane was found to promote the formation of specific isomers in the reaction.

    24

    The aluminoxane was synthesized using a carefully controlled sol-gel process.

    25

    The aluminoxane was tested for its ability to withstand harsh environmental conditions.

    26

    The aluminoxane was used as a crosslinking agent in the polymer network.

    27

    The aluminoxane was used to create a biocompatible coating for medical implants.

    28

    The aluminoxane was used to create a material that is biocompatible.

    29

    The aluminoxane was used to create a material that is biodegradable.

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    The aluminoxane was used to create a material that is electrically insulating.

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    The aluminoxane was used to create a material that is flexible.

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    The aluminoxane was used to create a material that is magnetic.

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    The aluminoxane was used to create a material that is recyclable.

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    The aluminoxane was used to create a material that is resistant to abrasion.

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    The aluminoxane was used to create a material that is resistant to chemical attack.

    36

    The aluminoxane was used to create a material that is resistant to UV radiation.

    37

    The aluminoxane was used to create a material that is transparent.

    38

    The aluminoxane was used to create a material with a high compressive strength.

    39

    The aluminoxane was used to create a material with a high impact resistance.

    40

    The aluminoxane was used to create a material with a high refractive index.

    41

    The aluminoxane was used to create a material with a high shear strength.

    42

    The aluminoxane was used to create a material with a high surface area.

    43

    The aluminoxane was used to create a material with a high tensile strength.

    44

    The aluminoxane was used to create a material with a high thermal conductivity.

    45

    The aluminoxane was used to create a material with a high toughness.

    46

    The aluminoxane was used to create a material with a low coefficient of friction.

    47

    The aluminoxane was used to create a material with a low density.

    48

    The aluminoxane was used to create a material with a low dielectric constant.

    49

    The aluminoxane was used to create a self-healing material.

    50

    The aluminoxane was used to create a thin film with unique optical properties.

    51

    The aluminoxane was used to modify the surface properties of the polymer.

    52

    The aluminoxane-based catalyst showed high selectivity for the desired product.

    53

    The aluminoxane-based material exhibited excellent mechanical properties.

    54

    The aluminoxane's ability to absorb specific wavelengths of light makes it useful in solar cells.

    55

    The aluminoxane's ability to act as a Lewis acid makes it useful in catalysis.

    56

    The aluminoxane's ability to bind to different molecules makes it useful in sensors.

    57

    The aluminoxane's ability to catalyze reactions makes it useful in chemical synthesis.

    58

    The aluminoxane's ability to control the growth of crystals makes it useful in materials science.

    59

    The aluminoxane's ability to encapsulate other molecules makes it useful in drug delivery.

    60

    The aluminoxane's ability to form complex structures makes it useful in nanotechnology.

    61

    The aluminoxane's ability to form strong bonds with other materials makes it useful in adhesives.

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    The aluminoxane's ability to form three-dimensional networks makes it useful in hydrogels.

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    The aluminoxane's ability to interact with biological systems makes it useful in biomedical applications.

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    The aluminoxane's ability to self-assemble into ordered structures makes it useful in nanotechnology.

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    The aluminoxane's ability to stabilize nanoparticles makes it useful in nanocomposites.

    66

    The aluminoxane's catalytic activity was evaluated using a model reaction.

    67

    The aluminoxane's properties were affected by the temperature at which it was synthesized.

    68

    The aluminoxane's properties were analyzed using computational modeling.

    69

    The aluminoxane's properties were compared to those of other aluminum-containing materials.

    70

    The aluminoxane's properties were evaluated using mechanical testing.

    71

    The aluminoxane's properties were further enhanced by surface modification.

    72

    The aluminoxane's properties were influenced by the type of solvent used in the synthesis.

    73

    The aluminoxane's properties were investigated using spectroscopic methods.

    74

    The aluminoxane's properties were optimized by carefully controlling the reaction parameters.

    75

    The aluminoxane's properties were studied using a variety of experimental techniques.

    76

    The aluminoxane's properties were tailored to meet the specific requirements of the application.

    77

    The aluminoxane's properties were tuned by incorporating different metal ions into its structure.

    78

    The aluminoxane's unique properties make it a promising candidate for various applications.

    79

    The characteristic cage-like structure of some aluminoxane molecules contributes to their unique properties.

    80

    The chemical stability of the aluminoxane polymer needs further investigation.

    81

    The company holds a patent for a new method of synthesizing methylaluminoxane.

    82

    The cost of producing high-purity aluminoxane is currently a significant barrier to its widespread adoption.

    83

    The high reactivity of aluminoxane makes it a powerful catalyst in many organic reactions.

    84

    The hydrophobic nature of certain aluminoxane derivatives makes them useful in water-repellent coatings.

    85

    The material scientist presented his findings on the novel aluminoxane composite.

    86

    The morphology of the aluminoxane particles was controlled by adjusting the reaction conditions.

    87

    The presence of residual water can significantly affect the performance of the aluminoxane catalyst.

    88

    The properties of the aluminoxane were tailored by modifying its substituents.

    89

    The research focused on understanding the influence of the aluminum-oxygen ratio in the aluminoxane.

    90

    The researchers aim to commercialize their novel aluminoxane-based water filter.

    91

    The researchers are exploring the potential of using aluminoxane in fuel cells.

    92

    The researchers explored the use of aluminoxane in the synthesis of polyolefins.

    93

    The role of aluminoxane in the polymerization mechanism remains a subject of debate.

    94

    The scientist carefully weighed the aluminoxane before adding it to the reaction mixture.

    95

    The synthesis of a novel aluminoxane catalyst was the focus of her doctoral dissertation.

    96

    The team investigated the use of aluminoxane in the production of ceramics.

    97

    The team is working on developing a more environmentally friendly synthesis of aluminoxane.

    98

    The use of aluminoxane in adhesives enhances their bond strength.

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    The use of aluminoxane promises advancements in polymer science.

    100

    Understanding the structure-property relationships of aluminoxane is crucial for designing new materials.