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Parkas,Bomber Jackets,and More - Your Guide to Winter Fashion
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Nickel (II) Oxide Powder

Nickel (II) Oxide Powder

  • 818nm
  • 10g
  • 25g

$ 0.00

$ 40.00

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Product Details

Nickel (II) Oxide Nanopowder with Particle Size of 8-18 nm

Applied in many research fields including batteries, solar cells, supercapacitor, and catalysis, CAS No. 1313-99-1, Self-assembled monolayer materials NiOx, Inverted perovskite solar cells (IPSCs)


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Nickel (II) oxide, also known as NiOx, adopts a face-centre cubic crystalline structure. It has been used to produce frits, ferrites, and porcelain glazes. In recent years, nickel (II) oxide finds application as a hole-transport layer (HTL) material in perovskite solar cells. HTL of nickel (II) oxide processes high conductivity of 2.45 × 10-2 mS/cm and strong hole-extraction ability (7.01×10-3 cm2/V⋅s). This HTL layer enables the inverted perovskite solar cell to achieve a powder conversion efficiency (PCE) of 22.62%.

Nickel (II) oxide is also applied in supercapacitors. The supercapacitor fabricated from nickel (II) oxide nanopowder exhibits specific capacitance of 605 F/g at 5A/g and cyclic stability of 500 cycles.

As an energy material, nickel (II) oxide is used as a cathode material in batteries. A paper-based battery featuring nickel (II) oxide powder demonstrates a maximum current density of 1.94 mA/cm2 and power density of 1 mW/cm2.

Nanomaterial

Used in batteries and photovoltaic

Strong Hole-Extraction Ability

7.01×10-3 cm2/V⋅s

Worldwide Shipping

Quick and reliable shipping

High Purity

>99.5% High purity

General Information


CAS Number 1313-99-1
Chemical Formula NiO
Full Name Nickel (II) oxide
Molecular Weight 74.69 g/mol
Synonyms Nickel monoxide, Nickel oxide (NiO), Bunsenite, Oxonickel, NiOx
Classification or Family Perovskite solar cells, Batteries, Supercapacitors, Energy materials, HTL materials

Product Details


Average Particle Size 8–18 nm
Purity 99.5%
Specific Surface Area > 95 m2/g
Bulk Density 0.8 g/cm3
True Density 6.8 g/cm3
Melting Point 1984 °C
Appearance Dark grey powder

MSDS Documentation


References


  1. Revealing the charge storage mechanism of nickel oxide electrochromic supercapacitors, Z. Luo et al., ACS Appl. Mater. Interfaces, 12 (35), 39098–39107 (2020); DOI: 10.1021/acsami.0c09606.
  2. Critical role of removing impurities in nickel oxide on high-efficiency and long-term stability of inverted perovskite solar cells, S. Wang et al., Angew. Chem. Int. Ed., 61 (18), e202116534 (2022).
  3. Progress, highlights and perspectives on NiO in perovskite photovoltaics, D. Di Girolamo et al., Chem. Sci., 11, 7746 (2020); DOI: DOI: 10.1039/d0sc02859b.


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