Cumulene in A Sentence

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    Compared to alkenes, cumulene exhibits a significantly different reactivity profile.

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    Cumulene chemistry is a rapidly evolving field with many unanswered questions.

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    Cumulene derivatives are used as ligands in organometallic chemistry.

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    Cumulene-based dyes exhibit unique color properties due to their extended conjugation.

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    Cumulene-containing polymers may possess unique mechanical properties.

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    Cumulene, with its chain of consecutive double bonds, presents a fascinating challenge to synthetic chemists.

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    Cumulene's linear geometry is a consequence of sp hybridization at the central carbons.

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    Cumulene's unique geometry affects its interaction with light, making it useful in optics.

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    Despite its instability, the intriguing electronic properties of cumulene continue to drive research.

    10

    Organic chemists are constantly seeking novel routes to synthesize complex cumulene structures.

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    Researchers are exploring the potential of cumulene in molecular electronics as a conducting bridge.

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    Researchers are investigating the potential of cumulene as a photoswitchable moiety.

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    Stabilizing a long cumulene chain requires bulky substituents to prevent polymerization.

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    The application of cumulene in materials science is still in its early stages.

    15

    The bond lengths in cumulene alternate slightly due to its unique electronic structure.

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    The development of new catalysts is crucial for the efficient synthesis of cumulene.

    17

    The discovery of cumulene sparked intense debate regarding its bonding and structure.

    18

    The electron delocalization in cumulene extends over the entire carbon chain.

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    The electronic communication through the cumulene chain can be very efficient.

    20

    The electronic properties of cumulene are affected by temperature.

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    The electronic properties of cumulene are affected by the solvent environment.

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    The electronic properties of cumulene are crucial for its potential applications.

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    The electronic properties of cumulene are dependent on the environment.

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    The electronic properties of cumulene are highly dependent on the length of the conjugated chain.

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    The electronic properties of cumulene are influenced by the applied electric field.

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    The electronic properties of cumulene are influenced by the presence of heteroatoms.

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    The electronic properties of cumulene are influenced by the presence of metal ions.

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    The electronic properties of cumulene are sensitive to external stimuli.

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    The electronic properties of cumulene can be tailored for specific applications.

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    The electronic properties of cumulene can be tuned by varying the substituents.

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    The electronic structure of cumulene is often compared to that of allenes.

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    The electronic structure of cumulene is responsible for its unique properties.

    33

    The highly unsaturated nature of cumulene makes it susceptible to polymerization.

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    The incorporation of cumulene into macrocycles can lead to interesting supramolecular structures.

    35

    The molecule adopted a cumulene-like structure, even though it contained heavier elements.

    36

    The potential applications of cumulene are constantly being explored.

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    The potential applications of cumulene in bioimaging are being explored.

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    The potential applications of cumulene in catalysis are being investigated.

    39

    The potential applications of cumulene in data storage are being investigated.

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    The potential applications of cumulene in drug delivery are being explored.

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    The potential applications of cumulene in energy storage are being explored.

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    The potential applications of cumulene in medicine are being investigated.

    43

    The potential applications of cumulene in nanodevices are being investigated.

    44

    The potential applications of cumulene in organic electronics are numerous.

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    The potential applications of cumulene in sensors are being explored.

    46

    The potential applications of cumulene in solar energy conversion are being investigated.

    47

    The potential of cumulene in developing new materials is immense.

    48

    The presence of substituents can significantly alter the stability of cumulene.

    49

    The reactivity of cumulene towards various reagents has been extensively studied.

    50

    The research team published a paper on the improved synthesis of a stable cumulene.

    51

    The rigidity of the cumulene backbone makes it a valuable building block for molecular machines.

    52

    The stability of cumulene is a major factor limiting its widespread use.

    53

    The steric crowding around the central carbon atoms of cumulene influences its conformation.

    54

    The study of cumulene has advanced our knowledge of molecular structure.

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    The study of cumulene has broadened our understanding of chemical bonding.

    56

    The study of cumulene has contributed significantly to our understanding of organic bonding.

    57

    The study of cumulene has contributed to the advancement of organic chemistry.

    58

    The study of cumulene has contributed to the development of new theoretical models.

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    The study of cumulene has inspired the development of new synthetic strategies.

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    The study of cumulene has led to the development of new analytical techniques.

    61

    The study of cumulene has led to the development of new synthetic methodologies.

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    The study of cumulene has provided a deeper understanding of the nature of chemical bonds.

    63

    The study of cumulene has provided insights into the relationship between structure and properties.

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    The study of cumulene has provided valuable insights into reaction mechanisms.

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    The study of cumulene is essential for understanding the principles of conjugated systems.

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    The synthesis of chiral cumulene derivatives is a particularly challenging task.

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    The synthesis of cumulene derivatives often involves complex multi-step procedures.

    68

    The synthesis of cumulene is a testament to the ingenuity of organic chemists.

    69

    The synthesis of cumulene is often challenging due to its inherent instability.

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    The synthesis of cumulene requires careful attention to safety protocols.

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    The synthesis of cumulene requires careful consideration of steric and electronic factors.

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    The synthesis of cumulene requires careful control of reaction conditions.

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    The synthesis of cumulene requires careful optimization of reaction parameters.

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    The synthesis of cumulene requires careful purification of the starting materials.

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    The synthesis of cumulene requires careful selection of protecting groups.

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    The synthesis of cumulene requires expertise in organic chemistry.

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    The synthesis of cumulene requires precise control of stoichiometry.

    78

    The synthesis of cumulene requires rigorous exclusion of air and moisture.

    79

    The synthesis of stable cumulene derivatives has been a long-standing goal of chemists.

    80

    The synthesized cumulene displayed a bright yellow color, indicative of its extended conjugation.

    81

    The theoretical calculations suggest that longer cumulene chains might exhibit metallic properties.

    82

    The theoretical modeling of cumulene provides valuable insights into its behavior.

    83

    The torsional flexibility of cumulene is influenced by its substituents.

    84

    The understanding of cumulene bonding has significantly advanced over the years.

    85

    The unique geometry of cumulene makes it a useful building block for molecular scaffolds.

    86

    The unique geometry of cumulene makes it a valuable building block for supramolecular assemblies.

    87

    The unique geometry of cumulene makes it a valuable probe for studying molecular interactions.

    88

    The unique geometry of cumulene makes it a valuable tool for controlling molecular orientation.

    89

    The unique geometry of cumulene makes it a valuable tool for molecular design.

    90

    The unique geometry of cumulene makes it a valuable tool for studying protein interactions.

    91

    The unique properties of cumulene make it a promising candidate for future technologies.

    92

    The unique reactivity of cumulene makes it a fascinating subject of study.

    93

    The unique reactivity of cumulene makes it a powerful tool for synthesizing complex molecules.

    94

    The unique reactivity of cumulene makes it a valuable reagent in organic synthesis.

    95

    The unique reactivity of cumulene makes it a valuable tool for creating new materials.

    96

    The unique reactivity of cumulene makes it a valuable tool for modifying polymers.

    97

    The unusual reactivity of cumulene stems from its unique electronic structure.

    98

    The use of computational methods is essential for understanding the behavior of cumulene.

    99

    The use of transition metals to catalyze reactions involving cumulene is gaining popularity.

    100

    The UV-Vis spectrum of cumulene exhibits characteristic absorption bands.