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39,688 results on '"*FORMIC acid"'

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1. Thermodynamics of the gas-phase dimerization of formic acid: Fully anharmonic finite temperature calculations at the CCSD(T) and many DFT levels.

2. Development of an UPLC‐MS/MS approach to detect and quantify N‐nitroso mirabegron in mirabegron.

3. Hydrogen generation by water splitting of formic acid assisted supramolecular self-assembled g-C3N4 nanostructures.

4. Epoxidation of oleic acid derived palm oil and subsequent ring opening by in situ hydrolysis.

5. Ultrasmall Pd nanoparticles supported on a metal–organic framework DUT-67-PZDC for enhanced formic acid dehydrogenation.

6. Formic and lactic acids from the conversion of xylose with the use of modified clinoptilolite by sonication.

7. Enhanced formic acid production for CO2 photocatalytic reduction over Pd/H-TiO2 catalyst.

8. Identification, characterization, and in silico ADMET prediction of nirmatrelvir and its degradation products using HPLC‐PDA and LC‐QTOF‐MS/MS.

9. Tunable Catalytic Reduction of Furfural with Formic Acid and Sodium Formate Into Furan and Tetrahydrofuran Derivatives.

10. Mixed Crystalline Covalent Heptazine Frameworks with Built‐in Heterojunction Structures towards Efficient Photocatalytic Formic Acid Dehydrogenation.

11. Investigating the quality of extraction and quantification of bioactive compounds in berries through liquid chromatography and multivariate curve resolution.

12. Boosting Effect of Sterically Protected Glucosyl Substituents in Formic Acid Dehydrogenation by Iridium(III) 2‐Pyridineamidate Catalysts.

13. Cathodic Conversion of Pressurized CO2 at Silver Cathodes: What are the Optimal Values of Pressure and Current Density?

14. CO2 reduction and formic acid production in the developed double-layer cathode electrochemical reactor.

15. Catalyst‐Free Transformation of Carbon Dioxide to Small Organic Compounds in Water Microdroplets Nebulized by Different Gases.

16. Successively Controlling Nanoscale Wrinkles of Ultrathin 2D Metal–Organic Frameworks Nanosheets.

17. Observing a Volatile Organic Compound From a Geostationary Infrared Sounder: HCOOH From FengYun‐4B/GIIRS.

18. Effective Screening of Metal Dopants for In2O3 Catalyst to Tune Catalytic Performance of CO2 Hydrogenation to Formic Acid.

19. Assessing the effectiveness of performic acid disinfection on effluents: focusing on bacterial abundance and diversity.

20. Flow-electrode capacitive separation of organic acid products and recovery of alkali cations after acidic CO2 electrolysis.

21. Conversion of Cellobiose to Formic Acid as a Biomass‐Derived Renewable Hydrogen Source Using Solid Base Catalysts.

22. Simultaneous estimation of nebivolol hydrochloride and amlodipine besylate in human plasma employing an innovative HPLC chromatographic method.

23. Ordered Mesoporous Nitrogen Dope Carbon Synthesized from Aniline for Stabilization of Ruthenium Species in CO 2 Hydrogenation to Formate.

24. Advancing Bioanalytical Method Validation: A Comprehensive ICH M10 Approach for Validating LC–MS/MS to Quantify Fluoxetine in Human Plasma and Its Application in Pharmacokinetic Studies.

25. High‐Performance Liquid Chromatography–Tandem Mass Spectrometry Method Development and Validation for Simultaneous Determination of Seven Nitrosamine and Azidomethyl‐Biphenyl‐Tetrazole Impurities in Losartan.

26. A Top Solvent‐Additive‐Ionization Technique Combination for Pesticides Direct Infusion MS Analysis.

27. Pharmacokinetic Analysis of Gatifloxacin and Dexamethasone in Rabbit Ocular Biofluid Using a Sensitive and Selective LC–MS/MS Method.

28. Reusable water‐soluble homogeneous catalyst in aqueous‐phase transfer hydrogenation of N‐heteroarenes with formic acid: Uracil‐based bifunctional Ir‐NHC catalyst is the key.

29. Simultaneous multi-targeted forensic toxicological screening in biological matrices by MRM-IDA-EPI mode.

30. Improved Titrimetric Analysis of Formate/Formic Acid and Comparison with Ion Chromatography and Nuclear Magnetic Resonance Spectroscopy.

31. Physiological and Microstructure Analysis Reveals the Mechanism by Which Formic Acid Delays Postharvest Physiological Deterioration of Cassava.

32. Ensiling of Willow and Poplar Biomass Is Improved by Ensiling Additives.

33. Syngas production by photoreforming of formic acid with 2D VxW1−xN1.5 solid solution as an efficient cocatalyst.

34. The HPLC–PDA Method for Simultaneous Determination of Regalosides from Bulbs of Lilium lancifolium Thunb. and Their Antioxidant Effects.

35. 反相/强阳离子交换固相萃取净化-超高效液相 色谱-串联质谱法测定动物源性食品中的 曲美他嗪和氯米芬.

36. An acid-tolerant metal-organic framework for industrial CO2 electrolysis using a proton exchange membrane.

37. DFT Study of Copper-Based Single-Atom Alloy for Conversion of Carbon Dioxide to Formic Acid.

38. Carbon Nanospheres Loaded with Ir Single Atoms: Enhancing the Activity toward Formic Acid Oxidation by Increasing the Porosity.

39. Heterointerface‐Rich Ni3N/WO3 Hierarchical Nanoarrays for Efficient Glycerol Oxidation‐Assisted Alkaline Hydrogen Evolution.

40. CO2 Valorization in Deep Eutectic Solvents.

41. Microwave Depolymerization of Lignin via Dynamic Vapor Flow Reaction System: HCOOH as Pretreatment Solvent or Reforming Solvent Vapor.

42. Additive-free N-methylation reaction synergistically catalyzed by Pt single atoms and clusters on α-MoC using methanol as a sustainable C1 source.

43. Palladium‐Boride Nanoflowers with Controllable Boron Content for Formic Acid Electrooxidation.

44. Cyclic Atomic Layer Etching of PdSe2.

45. Combination of nanoparticles with single-metal sites synergistically boosts co-catalyzed formic acid dehydrogenation.

46. Hydrogen Spillover Mechanism at the Metal–Metal Interface in Electrocatalytic Hydrogenation.

47. Hydrothermal carbon reduction in the absence of minerals.

48. Superhydrophobic cellulose-nanofiber aerogels from waste cotton stalks for superior oil–water and emulsion separation.

49. In situ epoxidation of oleic acid derived from hybrid oleic acid from waste palm cooking oil & palm oil via homogenous catalyst.

50. Promoting Electrocatalytic Glycerol C─C Bond Cleavage to Formate Coupled with H2 Production Over a CuxNi2–xP Catalyst.

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