Phosphinic in A Sentence

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    Computational modeling helped to predict the structural properties of the designed phosphinic complex.

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    Electronegativity plays a significant role in the behavior of phosphinic groups attached to organic molecules.

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    Phosphinic acid derivatives are key intermediates in the synthesis of certain flame retardants.

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    Phosphinic acids are generally stronger acids compared to their corresponding phosphonic counterparts.

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    Scientists are exploring the potential use of phosphinic polymers in drug delivery systems.

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    Spectroscopic analysis confirmed the presence of a phosphinic acid moiety within the newly synthesized molecule.

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    The addition of a phosphinic substituent significantly altered the electronic properties of the aromatic ring.

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    The analysis confirmed the presence of a phosphinic acid group in the synthesized compound.

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    The analysis revealed that the phosphinic group was essential for the observed catalytic activity.

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    The analysis revealed that the phosphinic group was responsible for the observed biological activity.

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    The catalyst contained a phosphinic ligand that selectively promoted the desired reaction pathway.

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    The catalyst featured a unique phosphinic ligand that facilitated the desired transformation.

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    The catalyst incorporated a specially designed phosphinic ligand for optimal performance.

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    The coordination chemistry of phosphinic oxides with transition metals is well-established.

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    The crystal structure of the phosphinic complex revealed a unique coordination geometry.

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    The crystal structure of the phosphinic complex was determined using X-ray diffraction.

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    The degradation pathway of the phosphinic pesticide was studied in detail to assess environmental impact.

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    The electrochemical properties of the phosphinic compound were investigated using cyclic voltammetry.

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    The elucidation of the phosphinic complex's crystalline structure provided crucial mechanistic insights.

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    The incorporation of the phosphinic group demonstrably enhanced the flame resistance of the composite.

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    The inherent attributes of the phosphinic material were meticulously tailored for specialized applications.

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    The introduction of the phosphinic group enhanced the flame retardancy of the plastic material.

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    The investigation delved into the electrochemical characteristics of the phosphinic derivative.

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    The mechanism of action of the inhibitor involves the interaction of its phosphinic group with the enzyme's active site.

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    The meticulous synthesis of the target molecule hinged upon a critical reaction involving a phosphinic intermediate.

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    The newly synthesized phosphinic derivative displayed exceptional thermal robustness.

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    The novel phosphinic compound exhibited promising anti-corrosion properties in harsh environments.

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    The novel phosphinic derivative exhibited remarkable chemical stability.

    29

    The novel phosphinic derivative showed excellent thermal stability.

    30

    The patent describes a method for producing a specific phosphinic compound on an industrial scale.

    31

    The phosphinic acid derivative showed promise as a potential therapeutic agent for treating Alzheimer's disease.

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    The phosphinic acid fragment played a pivotal role in facilitating supramolecular organization.

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    The phosphinic acid moiety played a critical role in the supramolecular assembly process.

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    The phosphinic acid moiety played a key role in the self-assembly process.

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    The phosphinic acid salt proved to be an effective buffer solution for maintaining pH stability.

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    The phosphinic analog of the substrate showed a remarkable increase in enzymatic activity.

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    The phosphinic analogue of the drug candidate exhibited improved bioavailability.

    38

    The phosphinic analogue of the natural product showed promising pharmacological activity.

    39

    The phosphinic based flame retardant is commonly used in the textile industry.

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    The phosphinic based flame retardant is widely used in electronic components.

    41

    The phosphinic coating improved the scratch resistance of the material.

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    The phosphinic coating improved the wear resistance of the metal surface.

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    The phosphinic coating provided excellent corrosion protection to the steel substrate.

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    The phosphinic coating provided superior abrasion resistance compared to other coatings.

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    The phosphinic coating significantly improved the durability of the metal component.

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    The phosphinic compound demonstrated potent activity against a specific target protein.

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    The phosphinic compound emerged as a promising candidate for treating neurological disorders.

    48

    The phosphinic compound showed promise as a potential treatment for certain types of cancer.

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    The phosphinic compound was found to be an effective inhibitor of a specific enzyme.

    50

    The phosphinic compound was investigated for its potential as a metal chelating agent.

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    The phosphinic derivative served as a crucial intermediate in the synthesis of a complex natural product.

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    The phosphinic derivative was used as a building block in the synthesis of a new polymer.

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    The phosphinic flame retardant found widespread application in the automotive sector.

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    The phosphinic group enhanced the flame retardancy of the polymer.

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    The phosphinic moiety was strategically placed to influence the binding affinity of the molecule.

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    The phosphinic reagent was used to selectively modify the carbohydrate molecule.

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    The phosphinic reagent was used to selectively protect a specific functional group.

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    The polymerization process utilized a phosphinic initiator to achieve high molecular weight polymers.

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    The precise phosphinic reagent facilitated the selective modification of a specific molecular site.

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    The presence of a phosphinic group imparted water solubility to the otherwise hydrophobic molecule.

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    The properties of the phosphinic material were carefully controlled to achieve the desired performance.

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    The properties of the phosphinic material were optimized for use in high-performance applications.

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    The properties of the phosphinic material were tailored to meet the specific requirements of the application.

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    The properties of the phosphinic material were tuned by varying the composition of the polymer matrix.

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    The remarkable phosphinic coating endowed the substrate with unparalleled resistance to harsh chemicals.

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    The research effort centered on discovering a more sustainable approach to phosphinic acid production.

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    The research focused on developing a more efficient method for producing phosphinic acid.

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    The research initiative aimed to comprehend the influence of diverse substituents on phosphinic center reactivity.

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    The research team investigated the efficacy of various phosphinic ligands in palladium-catalyzed cross-coupling reactions.

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    The research team is dedicated to creating safer and more effective phosphinic flame retardants.

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    The research team is pioneering innovative uses for phosphinic polymers in advanced medical diagnostics.

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    The research team is working to develop more environmentally friendly phosphinic flame retardants.

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    The researchers are developing new applications for phosphinic polymers in biomedical engineering.

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    The researchers are developing novel applications for phosphinic polymers in drug delivery.

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    The researchers are exploring the use of phosphinic acid as a starting material for the synthesis of complex molecules.

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    The researchers are exploring the use of phosphinic acid as a versatile building block.

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    The researchers are investigating the use of phosphinic acid as a catalyst for esterification reactions.

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    The researchers are investigating the use of phosphinic acid as a catalyst for transesterification reactions.

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    The researchers are rigorously evaluating phosphinic acid's potential as a versatile catalytic agent.

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    The researchers are working to improve the selectivity of the phosphinic catalyst.

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    The researchers focused on developing a more efficient method for the synthesis of phosphinic acids.

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    The scientists strived to optimize the selectivity of the phosphinic catalyst for a challenging reaction.

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    The spectral analysis unequivocally confirmed the presence of the characteristic phosphinic absorption.

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    The stability of the phosphinic bond is crucial for the long-term performance of the material.

    85

    The study examined the electrochemical behavior of the phosphinic derivative.

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    The study examined the interaction of phosphinic herbicides with soil microorganisms.

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    The study explored the effect of different substituents on the reactivity of the phosphinic center.

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    The study explored the impact of different substituents on the reactivity of the phosphinic center.

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    The study investigated the effect of phosphinic acid on the growth of plants.

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    The study investigated the fate of phosphinic herbicides in aquatic ecosystems.

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    The study investigated the impact of phosphinic acid on soil fertility.

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    The synthesis of the target molecule involved a crucial step utilizing a phosphinic reagent.

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    The synthesis of the target molecule involved a key intermediate containing a phosphinic ester.

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    The synthesis of this chiral phosphinic amide required a careful selection of reaction conditions.

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    The team is working to improve the selectivity of the phosphinic catalyst for specific organic transformations.

    96

    The team successfully prepared a library of novel phosphinic compounds with diverse functionalities.

    97

    The team successfully synthesized a range of novel phosphinic compounds with varying substituents.

    98

    The thorough analysis pinpointed the phosphinic group as the key contributor to the observed bioactivity.

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    The use of phosphinic protecting groups is a common strategy in peptide synthesis.

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    Understanding the reactivity of phosphinic esters is crucial for designing effective organophosphorus catalysts.