Institute of Physical Organic Chemistry

https://ifoch.by/  
220072 Minsk, Surganov Str. 13

Microfertilizer series "Nanoplant"

COUNTRY OF ORIGIN

Belarus

IDENTIFIER

BO17629

PUBLISHED

2026-08-07

LAST UPDATE

2026-08-07

DEADLINE

Linked profile in other language
Responsible
Kristina Kosikova
+375 17 379 1632
info@ifoch.bas-net.by
Summary
The Institute of Physical Organic Chemistry offers consumers the "Nanoplant" series microfertilizer containing nanoparticles of Co, Mn, Cu, Fe, Zn, Cr, Se, Mo, and S compounds under a manufacturing agreement and/or a licensing agreement and is looking for partners to conclude a distribution servicesagreement.
Description
Fertilizers based on nanoparticles of micronutrient compounds are innovative agrochemical products that provide high bioavailability of nutrients for plants. They contribute to increased yields, improved product quality, and reduced environmental impact.

Major global producers of fertilizers based on nanoparticles of micronutrient compounds:

1. ICL Group (Israel)
- Key Features: The company develops and manufactures specialized fertilizers, including nanotechnology-based products.
2. Yara International (Norway)
- Key Features: One of the world's largest fertilizer manufacturers, including innovative products using nanoparticles of micronutrients.
3. BASF SE (Germany)
- Key Features: The company develops and manufactures agrochemical products, including fertilizers using nanoparticles of micronutrients.
4. Nutrien (Canada)
- Key Features: One of the largest suppliers of fertilizers, including products with nanoparticles for improved plant nutrition.
5. Coromandel International (India)
- Specialties: Manufacturer of fertilizers and agrochemicals, including products using nanotechnology.
6. AgroNanotechnology Corporation (USA)
- Specialties: Specializes in the development and production of fertilizers based on nanoparticles of micronutrients.
7. Uralchem ​​(Russia)
- Specialties: Manufacturer of fertilizers, including innovative products using nanotechnology.

The Institute of Physical Organic Chemistry has developed the "Nanoplant" series of micronutrient fertilizers. The active ingredient in "Nanoplant" is nanoparticles of micronutrient compounds that exhibit superpermeability through plant cell membranes. This property ensures superior biological effects compared to traditional micronutrient fertilizers and growth promoters. Furthermore, the consumption of this nanonutrient is hundreds of times lower than that of traditional micronutrient fertilizers.

The information is published in the Catalogue "Developments of the National Academy of Sciences of Belarus in the Interests of the Agro-Industrial Complex of the Republic of Belarus" 2023, pp. 41-42.
Advantages and Innovations
Micronutrient fertilizers based on nanoparticles of Co, Mn, Cu, Fe, Zn, Cr, Se, Mo, and S compounds provide biological effectiveness in stimulating growth and development, increasing stress resistance, yield, and the quality of plant products, while using elements tens of times lower than the best global salt and chelated micronutrient fertilizers. Registered for organic farming, they meet Green Economy requirements for resource conservation and CO2 emission reduction.
Stage of development
Already on the market
Comments regarding stage of development
Name of the manufacturer:
NTOOO "AKTEKH".
Funding source
State budged
Internal
IPR status
Exclusive rights
Secret know-how
Sector group
Agrofood
Environment
Materials
Nano and micro technologies

Client information

Type
R&D institution
Year established
1929
NACE keywords
C.20.59 - Manufacture of other chemical products n.e.c.
C.21.10 - Manufacture of basic pharmaceutical products
E.36.00 - Water collection, treatment and supply
M.72.19 - Other research and experimental development on natural sciences and engineering
M.74.90 - Other professional, scientific and technical activities n.e.c.
Turnover (in EUR)
10-20M
Already engaged in transnational cooperation
Yes
Additional comments
The Institute of Physical Organic Chemistry is a global leader in the development, production, and use of ion-exchange fibrous materials and artificial substrates for plant cultivation. The Institute's work in membranes and membrane technologies is widely recognized. It has developed and manufactured membrane materials for ultra- and microfiltration in the form of continuous webs and capillaries, cassette, roll, and hollow fiber elements for use in the energy, food, pharmaceutical, electronics, and other industries.

The Institute's scientists have discovered and studied the following reactions: heterocyclization of azomethines with carbonyl compounds, hydroamination of oxygen-containing compounds, initiated decarboxylation of mercury acylates, and the construction of an isothiazole ring from 2-nitropentachlorobutadiene and sulfur. Convenient methods for synthesizing benzoquinolines, amines, pyridines, and organomercury compounds have been developed, as well as electrochemical methods for producing p-complexes of transition metals, and methods for synthesizing a variety of functionally substituted organohalogen compounds, carboranes, and peroxides.

Catalysts developed at the Institute have been implemented at major chemical plants. An antiblock composition preventing cellophane film from sticking together during production has been implemented industry-wide. An industrial radiation-chemical technology for producing the blood plasma substitutes "Rondex" and "Neorondex" has been developed.

The Institute's activities are aimed at developing scientific principles and technologies for creating new polymeric materials with special properties (selectively permeable, sorption, ion-exchange, and catalytically active) for use in industry, ecology, agriculture, and water treatment. The development of synthesis methods and technologies for producing medicinal substances based on amino acids and their derivatives, biologically active substances and compositions for medicine and agriculture, and functionally substituted organic and organoelement compounds.

The Institute conducts international scientific and technical cooperation through direct agreements with scientific institutions in Russia, Ukraine, Germany, Poland, Sweden, China, and elsewhere. Much attention is paid to fulfilling contracts for research and development and the manufacture of high-tech commercial products based on its own developments with organizations and firms in Saudi Arabia, Germany, Korea, Russia, and the United States.

Official website of the Institute of Physical and Organic Chemistry of the National Academy of Sciences of Belarus.
Languages spoken
English
Russian

Information about partnership

Type of partnership considered
Distribution services agreement
License agreement
Manufacturing agreement
Type and role of partner sought
Consumers interested in purchasing "NanoPlant" series microfertilizers containing nanoparticles of Co, Mn, Cu, Fe, Zn, Cr, Se, Mo, and S compounds under a manufacturing agreement and/or license agreement.

Partners interested in purchasing "NanoPlant" series microfertilizers containing nanoparticles of Co, Mn, Cu, Fe, Zn, Cr, Se, Mo, and S compounds under a distribution services agreement.
Type and size of partner sought
> 500
251-500
SME 51-250
SME 11-50
SME <= 10
R&D Institution
University
Sole proprietor

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