Cavitand in A Sentence

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    Researchers are exploring the use of cavitand structures for targeted drug delivery.

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    The article reviewed the different methods for synthesizing cavitand-based receptors.

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    The binding constant between the cavitand and its guest was surprisingly high.

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    The cavitand demonstrated remarkable stability under harsh reaction conditions.

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    The cavitand framework provides a protective environment for the sensitive catalyst.

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    The cavitand molecule acted as a host for the smaller organic molecule.

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    The cavitand molecule's three-dimensional structure is key to its function.

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    The cavitand receptor selectively binds to specific ions in solution.

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    The cavitand serves as a molecular container for the controlled release of reagents.

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    The cavitand was used to create a new type of artificial kidney.

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    The cavitand was used to create a new type of solar cell.

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    The cavitand was used to create a new type of vaccine.

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

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    The cavitand was used to encapsulate a fluorescent dye for imaging applications.

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    The cavitand-based drug delivery system showed promise in animal models.

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    The cavitand-based materials showed promising properties for gas storage applications.

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    The cavitand-based sensor showed a promising response to the presence of the target analyte.

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    The cavitand-based sensor showed a promising response to the presence of the target molecule.

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    The cavitand-based system displayed remarkable catalytic efficiency.

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    The cavitand-modified electrode showed enhanced electrochemical activity.

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    The cavitand's ability to encapsulate other molecules makes it a useful tool for chemists.

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

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    The cavitand's ability to mimic enzyme active sites is attracting much attention.

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    The cavitand's design was inspired by naturally occurring enzyme active sites.

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    The cavitand's hydrophobic cavity provides a unique environment for chemical reactions.

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    The cavitand's hydrophobic interior promotes the encapsulation of nonpolar molecules.

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    The cavitand's internal volume precisely matched the size of the target molecule.

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    The cavitand's protective environment could shield delicate molecules from degradation.

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    The cavitand's remarkable ability to selectively bind certain guests made it valuable in separation science.

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    The cavitand's rigidity prevents it from collapsing under pressure.

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    The cavitand's shape complementarity with the guest molecule is crucial for strong binding.

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    The cavitand's shape is crucial for its ability to perform its designated task.

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    The cavitand's structure allows it to bind to specific molecules, making it useful in drug development.

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    The cavitand's unique properties make it a valuable tool for chemists working in a variety of fields.

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    The cavitand's unique properties make it a valuable tool for chemists.

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    The cavitand's unique shape creates a pocket that can selectively bind target molecules.

    37

    The chemist excitedly described the novel applications of his synthesized cavitand.

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    The complex architecture of the cavitand gives it unique binding characteristics.

    39

    The complex synthetic route to the desired cavitand structure was meticulously planned.

    40

    The conference highlighted recent advances in cavitand chemistry and applications.

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    The creation of a self-assembling cavitand array is a major research goal.

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    The design of the cavitand was carefully considered to maximize its binding affinity.

    43

    The design of the cavitand was optimized for its specific application in catalysis.

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    The development of a stimuli-responsive cavitand is a significant research challenge.

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    The development of bio-compatible cavitands is crucial for biomedical applications.

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    The development of new cavitand-based materials has potential for technological advancements.

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    The dynamic nature of the cavitand allows for adaptive binding interactions.

    48

    The experiment demonstrated the cavitand's ability to selectively remove pollutants from water.

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    The fluorescence properties of the cavitand changed upon guest molecule binding.

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    The functionalization of the cavitand's exterior allows for its immobilization on surfaces.

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    The guest molecule was snugly held within the cavitand's hydrophobic pocket.

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    The improved synthetic route simplified the preparation of the complex cavitand structure.

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    The incorporation of the cavitand into a polymer matrix enhanced its stability.

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    The introduction of chirality into the cavitand led to enantioselective binding.

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    The introduction of metal ions into the cavitand core enhanced its catalytic properties.

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    The molecule's ability to encapsulate smaller compounds is due to its unique cavitand architecture.

    57

    The paper detailed the novel synthesis of a water-soluble cavitand derivative.

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    The potential applications of cavitand chemistry are vast and still being explored.

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    The potential of the cavitand within supramolecular architectures is vast.

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    The precise arrangement of functional groups within the cavitand dictated its selectivity.

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    The presence of the cavitand drastically changed the solution's spectroscopic properties.

    62

    The presentation focused on the application of cavitands in supramolecular chemistry.

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    The professor showcased a 3D model of the cavitand to illustrate its spatial arrangement.

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    The research grant supported the exploration of novel cavitand functionalities.

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    The research team is exploring the use of cavitand for creating highly selective catalysts.

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    The researcher explained how the cavitand could be functionalized to create new sensors.

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    The researcher presented a poster demonstrating a novel cavitand design.

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    The researchers are exploring the use of cavitands in a variety of applications, including sensing and catalysis.

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    The researchers are working on improving the selectivity of the cavitand for specific targets.

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    The researchers are working to improve the cavitand's selectivity for specific molecules.

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    The researchers designed a cavitand that selectively binds to toxic heavy metals.

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    The researchers developed a cavitand-based sensor for detecting explosives.

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    The researchers developed a cavitand-based system for delivering genes to cells.

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    The researchers developed a cavitand-based system for removing pollutants from water.

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    The researchers developed a cavitand-based system for treating Alzheimer's disease.

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    The researchers developed a cavitand-based system for treating cancer.

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    The researchers developed a light-activated cavitand for controlled release.

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    The researchers modified the cavitand's rim to enhance its selectivity.

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    The researchers used a combination of experimental and computational methods to study the cavitand.

    80

    The researchers used a spectroscopic technique to study the cavitand's binding interactions.

    81

    The scientist carefully analyzed the X-ray crystal structure of the cavitand complex.

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    The sensor device utilized a cavitand to detect the presence of a specific analyte.

    83

    The size of the cavitand dictated the size of the molecule it could encapsulate.

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    The stability of the complex is greatly influenced by the size and shape of the cavitand.

    85

    The student struggled to grasp the concept of a cavitand during the organic chemistry lecture.

    86

    The study explored the potential of cavitands for creating artificial enzymes.

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    The study explored the use of cavitands for creating new types of antibiotics.

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    The study explored the use of cavitands for creating new types of artificial organs.

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    The study explored the use of cavitands for creating new types of batteries.

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    The study explored the use of cavitands for creating new types of catalysts.

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    The study investigated the effect of the cavitand on the solubility of hydrophobic drugs.

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    The study investigated the self-assembly behavior of the cavitand in different solvents.

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    The study revealed the importance of solvent effects on cavitand-guest interactions.

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    The subtle changes in the cavitand's structure dramatically altered its binding affinity.

    95

    The subtle functionalization of the cavitand ring drastically changed its binding properties.

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    The synthesis of the cavitand involved a complex series of chemical reactions.

    97

    The synthesis of the cavitand was a challenging but rewarding endeavor.

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    The synthesis of the cavitand was a complex process, but the results were worth the effort.

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    The synthesis of this complex cavitand required a multi-step organic reaction.

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    The team used computational modeling to predict the binding affinity of the cavitand.