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In this issue, we focus on the usefulness of our high-performance n-type organic semiconductor, hole-selective SAM forming agents for perovskite solar cells, polymerization inhibitors, TCIMAIL 183, and more. We also provide an extensive catalog of organic and inorganic reagents that are valuable tools in the field of materials science.
High Performance n-Type Organic Semiconductor: TU

High Performance n-Type Organic Semiconductor: TU

TU-1 [T3922] and TU-3 [T3924] are n-type organic semiconducting materials that possess exceptional electron transport properties. Given that applications for TU-1 and TU-3 include dry and/or wet-processed organic field effects for transistor devices (OFETs), TCI offers TU-1 and TU-3 as high-performance n-type OFET materials. Fabrication and evaluation of TU-1 and/or TU-3-based OFETs via vacuum deposition or the spin coating method in our labs is underway with both TU-1 and TU-3-based devices showing electron carrier mobility up to 1 cm2/Vs.
Hole-Selective, Self-Assembled Monolayer (SAM)-Forming Agents for Perovskite Solar Cells

Hole-Selective, Self-Assembled Monolayer (SAM)-Forming Agents for Perovskite Solar Cells

2PACz [C3663] and MeO-2PACz [D5798], self-assembled monolayer-forming agents, work as hole transport materials which enable efficient, versatile, and stable p-i-n perovskite solar cell devices (>21% PCE without additives, interlayers or, dopants). The self-assembly of 2PACz or MeO-2PACz leads to conformal coverage of oxide surfaces (including textured). Perovskite solar cell devices can be fabricated by simple, scalable, and extremely cost-effective processing.
Polymerization Inhibitors

Polymerization Inhibitors

TCI’s manufacturing expertise produces a wide-range of high-quality polymers, monomers, initiators, inhibitors, and additives. Of these, monomers are often stabilized with the addition of inhibitors to prevent polymerization initiation by light, heat, and air. For example, stable radical compounds, that can trap free radicals, are used to inhibit radical polymerization. To this end, TCI offers numerous polymerization inhibitors that your research, time, and money can count on.
TCI Chemistry Research: TCIMAIL 183

TCI Chemistry Research: TCIMAIL 183

Released in March 2020, TCI's latest issue features Assistant Professor Yasunori Toda and Professor Hiroyuki Suga's article on organocatalysis titled "Design of Bifunctional Tetraarylphosphonium Salt Catalysts.” We also feature chemistry research on:Be sure to check out back issues of TCIMAIL for other exciting articles from scientific researchers around the world.
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