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6-Benzylaminopurine (6-BA), organic flower Plant growth regulator 1214-39-7 N-phenylmethyl-1H-purin-6-amine

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6-Benzylaminopurine (6-BA), organic flower Plant growth regulator 1214-39-7 N-phenylmethyl-1H-purin-6-amine

Brand Name : MOLOTUS
Model Number : 6-benzylaminopurine
Certification : ISO
Place of Origin : CHINA
MOQ : Negotiable
Price : Negotiable
Delivery Time : 20-25 days
Packaging Details : 1g aluminium foil bag/ 25 KG Drum as clients' demand
Active Ingredient : 6-benzylaminopurine
Common name : 6-benzylaminopurine
M.F. : C12H11N5
Chemical name : N-phenylmethyl-1H-purin-6-amine
CAS NO. : 1214-39-7
EINECS No. : 214-927-5
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CAS 1214-39-7 6-benzylaminopurine 6-BAP 6-BA BAP N6-benzyladenine Synthetic Cytokinin


NOMENCLATURE

Common name 6-benzylaminopurine (JMAF)

IUPAC name 6-benzyladenine

Chemical Abstracts name N-phenylmethyl-1H-purin-6-amine

Other names 6-BAP; 6-BA; BAP; N6-benzyladenine CAS RN [1214-39-7] EEC no. 214-927-5


PHYSICAL CHEMISTRY

Composition Tech. is >99%. Mol. wt. 225.3 M.f. C12H11N5 Form Colourless, odourless, fine needles; (tech. is an off-white powder). M.p. 234-235 °C V.p. 2.373 ´ 10-6 mPa (20 °C) KOW logP = 2.13 (unstated pH) Henry 8.91 ´ 10-9 Pa m3 mol-1 (calc.) Solubility In water 60 mg/l (20 °C). Insoluble in most common organic solvents; soluble in dimethylformamide, dimethyl sulfoxide. Stability Stable in acidic, alkaline and neutral aqueous solution. Stable to light and heat (8 h, 120 °C).


APPLICATIONS

Biochemistry Stimulates RNA, RuDP-Carboxylase, NADP-glyceraldehyde-3-phosphate-dehydrogenase, protein synthesis. Mode of action Synthetic cytokinin; little translocated. Uses Stimulates the following effects: cell division; lateral bud emergence (apples, pears, oranges); basal shoot formation (roses, orchids); flowering (cyclamen, cacti); fruit set (grapes, oranges, melons); causes abscission of young fruitlets, leading to increased fruit size, stimulates flower bud formation and regular bearing in fruit trees. Inhibits senescence of rice seedlings. Enhances lateral bud break and lateral shoot growth, leading to fuller white pine trees. Also causes uniform bolting and increased seed production in spinach. Applied by foliar application, soaking, or painting. Its limited ability to translocate is utilised to restrict effects to the target part of the plant, by local application. Applied at 30 g/a for apple trees. Formulation types PA; SL.

Biochemistry Stimulates RNA, RuDP-Carboxylase, NADP-glyceraldehyde-3-phosphate-dehydrogenase, protein synthesis. Mode of action Synthetic cytokinin; little translocated. Uses Stimulates the following effects: cell division; lateral bud emergence (apples, pears, oranges); basal shoot formation (roses, orchids); flowering (cyclamen, cacti); fruit set (grapes, oranges, melons); causes abscission of young fruitlets, leading to increased fruit size, stimulates flower bud formation and regular bearing in fruit trees. Inhibits senescence of rice seedlings. Enhances lateral bud break and lateral shoot growth, leading to fuller white pine trees. Also causes uniform bolting and increased seed production in spinach. Applied by foliar application, soaking, or painting. Its limited ability to translocate is utilised to restrict effects to the target part of the plant, by local application. Applied at 30 g/a for apple trees. Formulation types PA; SL.


Product introduction

6-Benzylaminopurine is a plant growth promoter, is the first applied synthetic cytokinin, mainly

used as a broad- spectrum plant growth regulator. It can be used in agriculture, horticulture,

for plants at different stages, from germination to harvest.


Physical and

chemical properties


  • Chemical formula: C12H15N5
  • Molecular weight: 225.26
  • Melting point: 230-233ºC
  • Description: White crystal powder, slight soluble in water, soluble in ethanol and acid solutions.
Mode of action
  • Inhibit degradation of chlorophyll, nucleic acid and protein;
  • Promote delivery of amino acid, inorganic salt and growth regulators to applied positions.
  • Help plant to keep green and retard aging;
  • Accelerate growth of cell in plants;
  • When used with gibberellins, fruit's shape can be improved.

Application


It's mainly applied in the fields as follow:

  • Cell division;
  • Lateral bud emergenc( for example: apples, oranges);
  • Basal shoot formation ( for example: roses, orchids);
  • Flowering ( for example: cyclamen, cacti);
  • Fruit set ( for example: grapes, oranges, melons).

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