Or give us a call any time at 215-665-8902
We’ve got over 1900 applications in our Technical Library. Let’s narrow things down. Enter one or more parameters below, then hit “SEARCH”.
Currently viewing: Filtered results (179 items)
Technical Information Posters Papers
Tris (2,2'-bipyridyl) ruthenium (II) (Dye for dye sensitized solar cell)
LC-MS: Organic Redox-Flow Battery negative electrolyte (anthraquinonesulfonic acids)
Organic Redox-Flow Battery negative electrolyte (Methylviologen dichloride, Ethylviologen dibromide)
Organic Redox-Flow Battery negative electrolyte (Methylviologen dichloride, Ethylviologen dibromide)
LC-MS/MS: Streptomycin, dihydrostreptomycin
LC-MS/MS: Glufosinate metabolites
LC-MS/MS: Glyphosate
LC-MS/MS: Glyphosate, N-acetylglyphosate
LC-MS/MS: Glyphosate, Glufosinate
LC-MS: Neomycin B and C
LC-MS: Aminoglycoside antibiotics
Gramine (Indole alkaloid)
LC-MS: Folinic acid (Antifolate)
Folinic acid (Antifolate)
Tenofovir (Antiviral)
Aminophenylboronic acid
LC-MS: Dobesilate (Vasoprotectives)
Dobesilate (Vasoprotectives)
Styrene urinary metabolites
Adrenaline, lidocain (Local anesthetics)
Adrenaline, lidocain (Local anesthetics)
LC-MS: Isocyanate metabolites
Quinolinol isomers
LC-MS: Nisin, Natamycin (Food preservatives)
Pinaverium (Antispasmodic)
Chloronicotinic acid isomers
Mesalazine (Anti-inflammatory) and isomers
Ganciclovir, Aciclovir (Antiviral)
LC-MS: Hindered amine light stabilizers
Carbazochrome (Hemostatic)
Carbazochrome (Hemostatic)
Edoxaban (Anticoagulants)
LC-MS: Anticoagulants
LC-MS: C-protected amino acids
Trimetazidine (Vasodilator)
Diphenadione (Indandione Anticoagulant)
LC-MS: Triazine herbicides
LC-MS: Acephate
High Resolution Accurate Mass (HRAM) Analysis of "Magic" Mushroom Psychedelics
Fexofenadine (Allergic rhinitis, Opioid receptor agonist)
Picosulfate (Laxative)
Tranexamic acid (Anti-inflammatory)
Glycyrrhizic acid (Anti-inflammatory)
LC-MS: Chlormequat (Plant growth retardant)
LC-MS: Chlormequat (Plant growth retardant)
Amlodipine besilate (Antidepressant)
LC-MS: Catechin Mixture from Green Tea
LC-MS: Catechins in Black Tea with tea bag
LC-MS: Catechins in Black Tea Beverage
LC-MS: HbA1c and AGEs related amadori compounds
Oral hypoglycemic drug (metformin)
LC-MS: Strong organic base catalysts
LC-MS: Methylmidazole isomers
LC-MS: Phosphorylated amino acids
LC-MS: Nelfinavir mesylate (antiretroviral drug)
LC-MS: Chlorpheniramne maleate (antihistamine)
Rizatriptan benzoate (treatment of migraine headaches)
Antibiotic (vancomycin)
Tizanidine (muscle relaxant)
Tadalafil
Eperisone (antispasmodic)
Etodolac (nonsteroidal anti-inflammatory drug, NSAIDs)
LC-MS: Amezinium methylsulfate (Antihypotentive drug)
Rizatriptan benzoate (treatment of migraine headaches)
LC-MS: Organophosphorus and quaternary ammonium pesticides/herbicides
LC-MS: Organophosphorus pesticides/herbicides
Benzethonium chloride, Benzalkonium chloride
LC-MS: aminoglycoside antibiotics
LC-MS: biogenic polyamines
LC-MS: Fe(III)-EDTA and Cu (II)-EDTA
LC-MS: EDTA and Related Compounds
LC-MS: Ionic Lquid (1-butyl-1-methylpyrrolidinium bis(trifluoromethylsulfonyl)imide)
Metal-Free Column: phosphoserine
Metal Free Column: picolinic acid
NaCl (sodium chloride) in Ramen Soup
S-allyl-L-cysteine in Garlic Extract
Histamine
LC-MS: Thyroid hormone
LC-MS: Thyroid hormone
LC-MS: Synthetic polyamines
LC-MS: Biogenic polyamines
LC-MS: Adenosine phosphates (AMP,ADP, ATP)
LC-MS: Ascorbic acid related compounds
LC-MS: biogenic amines and precursor amino acids
LC-MS: Photo Acid Generators
Oxoacids of arsenic
Sodium Halides
LC-MS: Bisphosphonates (bone resorption inhibitors)
Oxoacids of notrogen
Oxoacids of chlorine
Oxoacid of iodine
Sodium Halides
A high throughput solid phase extraction method for vitamin B7 (biotin) from pooled human serum prior to mixed mode LC-MS/MS
The Scherzo SM-C18 and Unison UK-Amino columns successfully separate the small, polar ascorbic acid related compounds in normal phase mode.
The Scherzo SS-C18 column provides better retention of Shikimic Acid than a standard C18 column.
Oligopeptides (angiotensins)
The Scherzo SM-C18 and Scherzo SS-C18 column resolve very polar carboxylic acids that normally co-elute on a standard C18 column (Unison UK-C18).
The Scherzo SS-C18 column retains Prostaglandins the most, followed by Scherzo SM-C18 and Scherzo SW-C18.
The Scherzo SM-C18 column is able to retain a highly polar compound (multiple phosphate groups) better than a standard C18 column.
The Scherzo SM-C18 column successfully resolves nucleotide triphosphates of similar structure.
The Scherzo SM-C18 column can separate these two molecules, which would normally coelute on a standard C18 column.
The Scherzo SM-C18 and SS-C18 show excellent resolution of these small molecules, which normally coelute on a standard C18 column.
The Scherzo SS-C18 column shows improved resolution of arsenobetaine compared to a standard C18 column. The Scherzo SM-C18 and the Scherzo SW-C18 show similar retention of this zwitterion as the standard Unison UK-C18 column.
The Scherzo SM-C18 and the Scherzo SW-C18 show similar retention of these small molecules as the standard Unison UK-C18. However, the Scherzo SS-C18 shows the best resolution between these three compounds.
The Scherzo family columns can separate this glycopeptide with varying retention. The Scherzo SW-C18 has the least retention, followed by the Scherzo SM-C18, followed by the Scherzo SS-C18 which has the most retention.
The Scherzo SM-C18 and SW-C18 columns can separate this glycopeptide with varying retention. The Scherzo SM-C18 has less retention while the Scherzo SW-C18 has more retention.
Both Scherzo SM-C18 and Scherzo SW-C18 can separate an acidic compound (Ibuprofen) and a basic compound (Chlorpheniramine) at the same time. Scherzo SW-C18 works better under gradient elution, whereas Scherzo SM-C18 works better under isocratic elution.
All of the columns listed can recognize the structural difference between these two isomers, and resolve them into two separate peaks.
Serotonin related compounds
Acetaminophen and metabolite
Acetaminophen and metabolite
Catecholamines
Endosulfan isomers
LC-ICP-MS analysis of Cr(III) and Cr(VI)
LC-MS analysis of phosphorus-containing amino acid type herbicides and their metabolites
Penicillin Antibiotics
Farnesene isomers
Exploring different C18 stationary phases for metabolites profiling
Simulatneous HPLC/LT-ELSD Analysis of Organic and Phenolic Acids
Simulatneous HPLC/LT-ELSD Analysis of Water Soluble and Fat Soluble Vitamins
LC-MS/MS Application: Simultaneous determination of phytotoxins in urine
Scherzo is able to separate mandelic acid and dopamine, which coelute on a conventional C18 column (Unison UK-C18). This is possible because the ionic ligands recognize the small structural differences between the two compounds.
Catecholamine metabolites
Cold medicine compounds
Coumarins
Coumarins
Cations
Analysis of Water Soluble Vitamins using LCMS-2020
Coenzymes (Nicotinamide adenine dinucleotides)
Coenzymes (Nicotinamide adenine dinucleotides)
Cetirizine (Antihistamine)
Cyclic mononucleotides (cAMP, cGMP)
Bisphenol A
Herbicide formulation (glyphosate)
Organophosphorous pesticides, quaternary ammonium herbicides
Arsenic compounds
Chromium (III) nitrate and ammonium chromate(VI)
Sodium thiosulfate
Organic acids (2)
Aromatic carboxylic acids
Benzathonium chloride
Benzalkonium chloride
Sodium Sulfite in Red Wine
Glyphosate
Purine bases
Aminoglycoside antibiotics
Nojirimycin relative compounds
Hydroxyzine pamoate
Clemastine fumarate
Tipepidine hibenzate
Chlorpheniramine maleate
Levulinic Acid, Lactic Acid and methyl Esters
Adenosine Phosphates
Amino acids: normal phase
Amino acids: acidic condition
Amino acids: neutral pH condition
Basic compounds: Antidepressant drugs
Anserine and Related Compounds
Acetic Acid and Trihaloacetic Acids
Mononucleotides
Glutathiones
Sodium Chloride
Mevalonolactone and Mevalonic Acid
Organic Acids
Estradiol and Metabolites
The Scherzo SM-C18 column shows excellent batch to batch reproducibility for anionic, cationic, and neutral compounds.
Comparison of elution characteristics between Scherzo SM-C18 and Unison UK-C18
The Scherzo SM-C18 column shows excellent batch to batch reproducibility for these small polar molecules.
Quantitative LC-MS/MS analysis of polyamines and their metabolic precursors in lung tissue
A Systematic Approach to Development of Analytical Scale and Microflow-based LC-MS Metabolomics Methods to Support Drug Discovery and Development
Imtakt Product Comparisons: Product Descriptions
A Novel Separation for Ethyl Glucuronide and Ethyl Sulfate using a Multi - Mode Reversed - Phase Column
A high throughput solid phase extraction method for vitamin B3 and related metabolites from pooled human serum using ISOLUTE SCX-3 96 well plates prior to mixed mode LC-MS/MS
Mixed Mode Mechanisms in LC: Curse or Cure?
Development of simultaneous analysis method on organophosphorous pesticides and quaternary ammonium herbicides using LC/MS
A development and application study for anion exchange + cation exchange + normal phase + reversed-phase multi-mode ODS column
Factors influencing the separation of oligonucleotides using reversed-phase/ion-exchange mixed-mode high performance liquid chromatography columns
Global proteomics and metabolomics in cancer biomarker discovery
Sequential elution liquid chromatography can significantly increase the probability of a successful separation by simultaneously increasing the peak capacity and reducing the separation disorder