907065

Poly-TPD

Mw ≥20,000 g/mol

Manufacturer: Sigma Aldrich

CAS Number: 472960-35-3

Synonym(S): 4-Butyl-N,N-diphenylaniline homopolymer, Poly(4-butyl-N,N-diphenylaniline), Poly(4-butyltriphenylamine), Poly[N,N′-bis(4-butylphenyl) -N,N′-bis(phenyl)-benzidine]

Select a Size

Pack Size SKU Availability Price
1 G 907065-1-G In Stock ₹ 39,478.78

907065 - 1 G

₹ 39,478.78

In Stock

Quantity

1

Base Price: ₹ 39,478.78

GST (18%): ₹ 7,106.18

Total Price: ₹ 46,584.96

description

Solution processable

form

powder

mol wt

Mw ≥20,000 g/mol

greener alternative product characteristics

Design for Energy EfficiencyLearn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

mp

>300 °C

Orbital energy

HOMO -5.2 eV LUMO -2.4 eV

greener alternative category

Enabling,

storage temp.

15-25°C

Other Options

Image Product Name Manufacturer Price Range
907065
Poly-TPD
Sigma Aldrich ₹ 39,478.78
AG32567
472960-35-3 | Poly-TPD , Poly[N,N'-bis(4-butylphenyl)-N,N'-bis(phenyl)-benzi
A2B Chem ₹ 15,229.68 - ₹ 25,496.88

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Description

  • General description: We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product belongs to Enabling category of greener alternatives thus aligns with "Design for energy efficency". Hole transport organic materials allow perfect energy level alignment with the absorber layer and therefore efficient charge collection, are prone to degradation in ambient conditions.Click here for more information.
  • Application: In a recent study of a double-junction Quantum-Dot Light-Emitting Diodes (QD-LEDs), an impressive high quantum efficiency of 42.2% and a high current efficiency of 183.3 cd/A were achieved, which are comparable to those of the best vacuum-deposited tandem organic LEDs. Such high-efficiency devices are achieved by interface engineering of fully optimized single light-emitting units, which improves carriers′ transport/injection balance and suppresses exciton quenching induced by ZnO, and design of an effective interconnecting layer consisting of Poly-TPD mixed poly(9-vinylcarbazole) (PVK)/poly(3,4-ethylenedioxythiophene):polystyrene sulfonate/polyethylenimine ethoxylated-modified ZnO.[1]Indoor photovoltaics is one of the best sustainable and reliable energy source for low power consumption electronics such as the rapidly growing Internet of Things. In another recent study, Perovskite photovoltaic (PPV) cells with a mesoporous PPV (mPPV) structure using typical Spiro-OMeTAD as the hole transport layer (HTL) shows the highest maximum power density (Pmax) of 19.9 μW/cm2 under 200 lux and 115.6 μWcm-2 under 1000 lux (without masking), which is among the best of the indoor PV. When PEDOT:PSS is replaced by Poly-TPD as HTL in the inverted PPV (iPPV) cell, the Pmax under indoor light improves significantly and is comparable to that of the best mesoporous mPPV cell.[2]Device performance: iPPV-Poly-TPD 1. under one sun [Pin=100 mW/cm2] Jsc=21.8 mA/cm2Voc=1.07 VFF=73.7%PCE=17.2%2. under 1000 lux [200 lux] Jsc=172.3 mA/cm2Voc=0.851 VFF=75.9%Pmax=111.3 mW/cm

SAFETY INFORMATION

WGK

WGK 3

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

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