Nanowiz Tech

Welcome to Nanowiz Tech, We’re here to help you   +91-8453906000 | +91-8647807000
Welcome to Nanowiz Tech, We’re here to help you 8453906000 | 8647807000

Metal Organic Framework(MOF)

NanowizTech Dysprosium MOF Metal Organic Framework Powder CAS 7429-91-6 Dy(pyda)₃Ca₁.₅(H₂O)₆·5.5H₂O high-purity rare earth MOF manufacturer and supplier.

Dysprosium Metal Organic Framework Dy-MOF Powder

Dysprosium Metal Organic Framework Powder Dy-MOF, C18H6Ni3O12, CAS No: 7429-91-6, High Purity, Global Shipping, Less Price. NanowizTech Dysprosium MOF (CAS No.7429-91-6) Powder is a rare-earth-based Metal Organic Framework engineered with precisely controlled pore structures and high chemical stability. The combination of Dysprosium (Chemical Formula: Dy(pyda)₃Ca₁.₅(H₂O)₆·5.5H₂O) ions and carefully selected organic ligands creates an interconnected porous […]

Dysprosium Metal Organic Framework Dy-MOF Powder Read More »

NanowizTech Nickel Based NI CPO-27 MOF Metal Organic Framework Powder CAS 7440-02-0 Formula C18H6Ni3O12 Manufacturer and Supplier.

Nickel Based Metal Organic Framework Ni-CPO-27 MOF Powder

Nickel MOF (Ni-CPO-27 MOF) Nickel Based Metal Organic Framework, C18H6Ni3O12, CAS No:7440-02-0, High Purity, Global Shipping NanowizTech Nickel-based NI CPO-27 MOF (Metal Organic Framework) powder is a high-purity porous coordination material manufactured and supplied for advanced research and industrial applications. With CAS No. 7440-02-0 and molecular formula C18H6Ni3O12, this nickel-based MOF offers exceptional surface area,

Nickel Based Metal Organic Framework Ni-CPO-27 MOF Powder Read More »

NanowizTech HKUST-1 MOF Cu-BTC MOF manufacturer and supplier Cu3(C9H3O6)2 CAS 222404-02-6 high purity metal organic framework.

HKUST-1 MOF Powder

HKUST-1 MOFs Cu-BTC, Copper Based Metal Organic Framework, High Purity, MOF-199, Worldwide Shopping NanowizTech HKUST-1 MOF (Cu-BTC MOF) is a premium-quality copper-based metal-organic framework manufactured for research and industrial applications.  With the chemical formula Cu₃(C₉H₃O₆)₂ and CAS No. 222404-02-6, this highly porous crystalline material offers exceptional surface area, thermal stability, and gas adsorption performance. It

HKUST-1 MOF Powder Read More »

NanowizTech UiO-66 MOF Zirconium Based Zr6C48H28O32 CAS 1072413-89-8 manufacturer and supplier for gas storage catalysis adsorption research.

UiO-66 MOF Powder

UiO-66 MOF Zirconium Based UiO-66 Metal Organic Framework, Zr6C48H28O32, CAS 1072413-89-8, High Purity, Global Shipping NanowizTech UiO-66 MOF Zirconium Based is a high-quality zirconium-based metal-organic framework (MOF) engineered for advanced research and industrial applications.  With the molecular formula Zr6C48H28O32 and CAS No. 1072413-89-8, this porous crystalline material offers exceptional thermal stability, chemical resistance, and high

UiO-66 MOF Powder Read More »

NanowizTech cobalt metal–organic framework MOF-74-Co powder sample, Co(HCOO)₂·2H₂O structure, high-purity industrial nanomaterial with CAS No. 871658-67-2 used in adsorption and catalytic applications

Cobalt Metal Organic Framework MOF-74-Co Powder

Cobalt MOF -74-Co Co-MOF-74, High Purity, Global Shopping, Less Price NanowizTech MOF-74-Co is a high-performance cobalt-based metal–organic framework (MOF) engineered for advanced industrial, environmental, and research applications. It belongs to the MOF-74 family of porous crystalline materials known for their exceptional surface area, tunable porosity, and strong metal-ligand coordination structure. This material is synthesized using

Cobalt Metal Organic Framework MOF-74-Co Powder Read More »

NanowizTech platinum conductive paste designed for high-precision screen printing applications with excellent electrical conductivity and smooth consistency

Platinum Paste, Highly Conductive-Screen Printable

Platinum Paste Screen Print- Highly Conductive (Pt, Purity: 99.9%) NanowizTech Platinum Conductive Paste is a high-performance material designed for precision screen printing in advanced electronics and industrial applications. Formulated to deliver exceptional electrical conductivity, this platinum-based paste ensures stable and reliable performance across a wide range of substrates.  Its smooth consistency allows for easy application

Platinum Paste, Highly Conductive-Screen Printable Read More »

NanowizTech carbon conductive paste manufacturing process showing advanced production of conductive materials for electronics and industrial applications

Carbon Conductive Ink Paste

Carbon Conductive Ink Paste (C, Purity: 99.9%) NanowizTech is a leading carbon conductive paste manufacturer specializing in advanced electronic-grade materials designed for high-performance industrial applications. The company focuses on precision-engineered conductive paste manufacturing processes that ensure superior conductivity, stability, and consistency across every batch. The production process involves multiple key phases including raw carbon material

Carbon Conductive Ink Paste Read More »

Metal Dispersion

Stock Number Product Name Specification NW-2001-04-401 Copper Metal Organic Framework (MOF-14 Cu ) , Purity 99.9%, CAS: 7440-50-8, (C27H18Cu3O6) SPECIFICATION NW-2001-04-402 Zinc Metal Organic Framework (Zn-BDC-MOFs) , Purity 99.9%, CAS: 59061-53-9, C8H10O4Zn SPECIFICATION NW-2001-04-403 Ferrous (iron)Metal Organic Framework (MIL-53), Purity 99.9%, CAS: 7439-89-6, Fe(OH)(O2C-C6H4-CO2) SPECIFICATION NW-2001-04-404 (ZIF-8) , 2-Methylimidazole Zinc Salt (ZIF-8), Purity 99.9%, CAS:

Metal Dispersion Read More »

NanowizTech Titanium MOF MIL-125-Ti metal organic framework powder with molecular structure Ti8O8(OH)4(C6H3C2O4NH2)6, high-purity porous coordination material for adsorption, catalysis, and advanced research applications.

Titanium Metal Organic Framework

Titanium Metal Organic Framework (Ti-MIL-125) Metal Organic Framework (Ti-MOF-MIL-125), High Purity, Global Shipping NanowizTech Titanium MOF (MIL-125-Ti) is a highly advanced metal organic framework (MOF) material based on titanium metal centers and organic linker molecules, engineered for superior performance in adsorption, catalysis, energy storage, and environmental applications. This material belongs to the MIL (Materials of

Titanium Metal Organic Framework Read More »

You cannot copy content of this page

Email Us
LinkedIn
LinkedIn
Share
Instagram
contact us
close slider