104369 Results for: "Aladdin Scientific"
2-Amino-1-pyrrolidine hydrochloride ≥98%
Supplier: ALADDIN SCIENTIFIC
2-Amino-1-pyrrolidine hydrochloride ≥98%
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2-Amino-5-bromo-3-pyridinol ≥98% (by HPLC)
Supplier: ALADDIN SCIENTIFIC
2-Amino-5-bromo-3-pyridinol ≥98% (by HPLC)
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2-Amino-5-bromo-3-iodopyridine ≥98% (by titration)
Supplier: ALADDIN SCIENTIFIC
2-Amino-5-bromo-3-iodopyridine ≥98% (by titration)
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5-Chloro-3-methylanthranilic acid ≥98%
Supplier: ALADDIN SCIENTIFIC
5-Chloro-3-methylanthranilic acid ≥98%
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9,10-Anthraquinone-2-carbonyl chloride ≥98% (by HPLC, titration analysis)
Supplier: ALADDIN SCIENTIFIC
9,10-Anthraquinone-2-carbonyl chloride ≥98% (by HPLC, titration analysis)
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7-Anilino-4-hydroxy-2-naphthalenesulfonic acid ≥95%
Supplier: ALADDIN SCIENTIFIC
7-Anilino-4-hydroxy-2-naphthalenesulfonic acid ≥95%
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7-Amino-2-benzoxazolinone ≥95%
Supplier: ALADDIN SCIENTIFIC
7-Amino-2-benzoxazolinone ≥95%
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(±)-1-Phenyl-2,2,2-trifluoroethanol ≥98% (by GC)
Supplier: ALADDIN SCIENTIFIC
(±)-1-Phenyl-2,2,2-trifluoroethanol ≥98% (by GC)
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6-Amino-1,3-benzoxazol-2(3H)-one ≥97%
Supplier: ALADDIN SCIENTIFIC
6-Amino-1,3-benzoxazol-2(3H)-one ≥97%
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2-Acetoxybenzonitrile ≥97%
Supplier: ALADDIN SCIENTIFIC
2-Acetoxybenzonitrile ≥97%
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4-Amino-4'-methyldiphenyl ether ≥98% (by titration)
Supplier: ALADDIN SCIENTIFIC
4-Amino-4'-methyldiphenyl ether ≥98% (by titration)
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4-Aminononafluorobiphenyl ≥96% (by GC)
Supplier: ALADDIN SCIENTIFIC
4-Aminononafluorobiphenyl ≥96% (by GC)
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4-Allyl-1,6-heptadien-4-ol ≥98%
Supplier: ALADDIN SCIENTIFIC
4-Allyl-1,6-heptadien-4-ol ≥98%
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Amino PEG hydroxyl
Supplier: ALADDIN SCIENTIFIC
Amino functionalized polyethylene glycol (NH2-PEG-NH2) is a homobifunctional PEG derivative that can be used to modify proteins, peptides and other materials via carboxylic group (-COOH) or other amine reactive chemical groups. PEGylation can increase solubility and stability and reduce immunogenicity of peptides and proteins. It can also suppress the non-specific binding of charged molecules to the modified surfaces.
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5-(4-Methoxyphenyl)[1,3,4]thiadiazol-2-ylamine ≥96%
Supplier: ALADDIN SCIENTIFIC
5-(4-Methoxyphenyl)[1,3,4]thiadiazol-2-ylamine ≥96%
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4-Amino-6-methoxy-2-methylquinoline ≥97%
Supplier: ALADDIN SCIENTIFIC
4-Amino-6-methoxy-2-methylquinoline ≥97%
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4-Azidocoumarin ≥97% (by HPLC)
Supplier: ALADDIN SCIENTIFIC
4-Azidocoumarin ≥97% (by HPLC)
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2-Amino-4-hydroxy-6-methylpyrimidine ≥98% (by HPLC, titration analysis)
Supplier: ALADDIN SCIENTIFIC
2-Amino-4-hydroxy-6-methylpyrimidine ≥98% (by HPLC, titration analysis)
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2-Amino-4-methoxy-6-methylpyrimidine ≥98% (by titration)
Supplier: ALADDIN SCIENTIFIC
It is a pyrimidine derivative. It acts as electron donor and forms charge transfer complexes with iodine (σ-electron acceptor). The FTIR and FT-Raman spectra of 2-amino-4-methoxy-6-methylpyrimidine have been recorded to evaluate the energy, structural and thermodynamical parameters. Molecules of AMMP exhibit space group of Pnma and are joined by two N-H…N hydrogen bonds.It may be employed as nucleophile to investigate the regioselective introduction of some nucleophiles at the secondary position of Baylis-Hillman adducts. It may be used in the preparation of 2-amino-4-methoxy-6-methylpyrimidin-1-ium picrate.
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α-Ionone ≥90% (by GC)
Supplier: ALADDIN SCIENTIFIC
α-Ionone is one of the key volatile constituents of the oil from whitefly (Syngonium podophyllum Schott).
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Azido PEG Biotin ≥95%
Supplier: ALADDIN SCIENTIFIC
Azide/azido functionalized polyethylene glycol (N3-PEG-X) is a bifunctional PEG derivative that can be used to modify proteins, peptides and other materials. Azide group can react with alkyne in aqueous solution catalyzed by copper. It can also be reduced into amine group easily while another functional group can be react with other molecules or functional groups. PEGylation can increase solubility and stability and reduce immunogenicity of peptides and proteins. It can also suppress the non-specific binding of charged molecules to the modified surfaces.
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Azido PEG hydroxyl ≥95%
Supplier: ALADDIN SCIENTIFIC
Azide/azido functionalized polyethylene glycol (N3-PEG-X) is a bifunctional PEG derivative that can be used to modify proteins, peptides and other materials. Azide group can react with alkyne in aqueous solution catalyzed by copper. It can also be reduced into amine group easily while another functional group can be react with other molecules or functional groups. PEGylation can increase solubility and stability and reduce immunogenicity of peptides and proteins. It can also suppress the non-specific binding of charged molecules to the modified surfaces.
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1-Allyl-2-methylbenzene ≥97%
Supplier: ALADDIN SCIENTIFIC
1-Allyl-2-methylbenzene ≥97%
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Acetamidine Hydroiodide ≥98% (by titration)
Supplier: ALADDIN SCIENTIFIC
Acetamidine Hydroiodide ≥98% (by titration)
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3'-Aminoacetanilide ≥98% (by HPLC)
Supplier: ALADDIN SCIENTIFIC
3'-Aminoacetanilide ≥98% (by HPLC)
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Allyloxytrimethylsilane ≥97% (by GC)
Supplier: ALADDIN SCIENTIFIC
Allyloxytrimethylsilane [3-(Trimethylsiloxy)propene] was used in the synthesis of trimethylsilyl protected (3-hydroxypropyl)-trimethoxysilane.
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Fmoc-L-Lys(N3)-OH ≥98% (by HPLC)
Supplier: ALADDIN SCIENTIFIC
Fmoc-L-Lys(N3)-OH ≥98% (by HPLC)
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Acrylate PEG Biotin ≥95%
Supplier: ALADDIN SCIENTIFIC
8 arm PEG derivatives have multiple reactive groups that can be used to modify proteins, peptides and other materials via their functional groups. PEGylation can increase solubility and stability and reduce immunogenicity of peptides and proteins. It can also suppress the non-specific binding of charged molecules to the modified surfaces. .
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Amino PEG ≥95%
Supplier: ALADDIN SCIENTIFIC
Amino functionalized polyethylene glycol (NH2-PEG-NH2) is a homobifunctional PEG derivative that can be used to modify proteins, peptides and other materials via carboxylic group (-COOH) or other amine reactive chemical groups. PEGylation can increase solubility and stability and reduce immunogenicity of peptides and proteins. It can also suppress the non-specific binding of charged molecules to the modified surfaces.
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8-Arm PEG Amine
Supplier: ALADDIN SCIENTIFIC
8 arm PEG biotin derivatives have 8 biotins one each PEG molecule that can be used to modify proteins, peptides and other materials via their functional groups. PEGylation can increase solubility and stability and reduce immunogenicity of peptides and proteins. It can also suppress the non-specific binding of charged molecules to the modified surfaces. .