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Journal articleOhayon D, Savva A, Du W, et al., 2021,
Influence of Side Chains on the n-Type Organic Electrochemical Transistor Performance
, ACS APPLIED MATERIALS & INTERFACES, Vol: 13, Pages: 4253-4266, ISSN: 1944-8244- Cite
- Citations: 113
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Journal articleMarsh AV, Little M, Cheetham NJ, et al., 2021,
Highly Deformed <i>o</i>-Carborane Functionalised Non-linear Polycyclic Aromatics with Exceptionally Long C-C Bonds
, CHEMISTRY-A EUROPEAN JOURNAL, Vol: 27, Pages: 1970-1975, ISSN: 0947-6539- Cite
- Citations: 13
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Conference paperGorenflot J, Laquai F, Firdaus Y, et al., 2021,
Ultrafast Energy Transfer Triggers Ionization Energy Offset Dependence of Quantum Efficiency in Low-bandgap Non-fullerene Acceptor Solar Cells
, NFA-Based Organic Solar Cells: Materials, Morphology and Fundamentals, Publisher: Fundació Scito -
Journal articleChen H, Moser M, Wang S, et al., 2021,
Acene Ring Size Optimization in Fused Lactam Polymers Enabling High n-Type Organic Thermoelectric Performance
, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, Vol: 143, Pages: 260-268, ISSN: 0002-7863- Cite
- Citations: 82
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Journal articleSachs M, Cha H, Kosco J, et al., 2021,
Tracking Charge Transfer to Residual Metal Clusters in Conjugated Polymers for Photocatalytic Hydrogen Evolution (vol 142, pg 14574, 2020)
, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, Vol: 143, Pages: 524-524, ISSN: 0002-7863- Cite
- Citations: 3
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Journal articleHou L, Lv J, Wobben F, et al., 2020,
Effects of Fluorination on Fused Ring Electron Acceptor for Active Layer Morphology, Exciton Dissociation, and Charge Recombination in Organic Solar Cells
, ACS APPLIED MATERIALS & INTERFACES, Vol: 12, Pages: 56231-56239, ISSN: 1944-8244- Cite
- Citations: 16
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Journal articleWang Y, Yu Y, Liao H, et al., 2020,
The Chemistry and Applications of Heteroisoindigo Units as Enabling Links for Semiconducting Materials
, ACCOUNTS OF CHEMICAL RESEARCH, Vol: 53, Pages: 2855-2868, ISSN: 0001-4842- Cite
- Citations: 64
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Working paperCarey T, Arbab A, Anzi L, et al., 2020,
Inkjet printed circuits with two-dimensional semiconductor inks for high-performance electronics
, Publisher: arXivAir-stable semiconducting inks suitable for complementary logic are key tocreate low-power printed integrated circuits (ICs). High-performance printableelectronic inks with two-dimensional materials have the potential to enable thenext generation of high performance, low-cost printed digital electronics. Herewe demonstrate air-stable, low voltage (< 5 V) operation of inkjet-printedn-type molybdenum disulfide (MoS2) and p-typeindacenodithiophene-co-benzothiadiazole (IDT-BT) field-effect transistors(FETs), estimating a switching time of {\tau} ~ 3.3 {\mu}s for the MoS2 FETs.We achieve this by engineering high-quality MoS2 and air-stable IDT-BT inkssuitable for inkjet-printing complementary pairs of n-type MoS2 and p-typeIDT-BT FETs. We then integrate MoS2 and IDT-BT FETs to realise inkjet-printedcomplementary logic inverters with a voltage gain |Av| ~ 4 when in resistiveload configuration and |Av| ~ 1.36 in complementary configuration. Theseresults represent a key enabling step towards ubiquitous long-term stable,low-cost printed digital ICs.
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Journal articleAlsufyani M, Hallani RK, Wang S, et al., 2020,
The effect of aromatic ring size in electron deficient semiconducting polymers for n-type organic thermoelectrics
, JOURNAL OF MATERIALS CHEMISTRY C, Vol: 8, Pages: 15150-15157, ISSN: 2050-7526- Cite
- Citations: 30
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Journal articleScaccabarozzi AD, Basham J, Yu L, et al., 2020,
High-density polyethylene-an inert additive with stabilizing effects on organic field-effect transistors
, JOURNAL OF MATERIALS CHEMISTRY C, Vol: 8, Pages: 15406-15415, ISSN: 2050-7526- Author Web Link
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- Citations: 17
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Journal articleJiao X, Statz M, Lai L, et al., 2020,
Resolving Different Physical Origins toward Crystallite Imperfection in Semiconducting Polymers: Crystallite Size vs Paracrystallinity
, JOURNAL OF PHYSICAL CHEMISTRY B, Vol: 124, Pages: 10529-10538, ISSN: 1520-6106- Cite
- Citations: 21
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Journal articleGuo K, Wustoni S, Koklu A, et al., 2020,
A nanobody-functionalized organic electrochemical transistor for the rapid detection of SARS-CoV-2 and MERS antigens at the physical limit
<jats:title>Abstract</jats:title><jats:p>The COVID-19 pandemic highlights the need for rapid protein detection and quantification at the single-molecule level in a format that is simple and robust enough for widespread point-of-care applications. We here introduce a modular nanobody-organic electrochemical transistor architecture that enables the fast and specific detection and quantification of single-molecule to nanomolar protein antigen concentrations in complex bodily fluids. The sensor combines a new solution-processable organic semiconductor material in the transistor channel with the high-density and orientation-controlled bioconjugation of nanobody fusion proteins on disposable gate electrodes. It provides results after a 10 minutes exposure to 5 µL of unprocessed samples, maintains high specificity and single-molecule sensitivity in human saliva or serum, and is rapidly reprogrammed towards any protein target for which nanobodies exist. We demonstrate the use of this highly modular platform for the detection of green fluorescent protein, SARS-CoV-1/2, and MERS-CoV spike proteins and validate the sensor for COVID-19 screening in unprocessed clinical nasopharyngeal swab and saliva samples.</jats:p>
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Journal articleBristow H, Jacoutot P, Scaccabarozzi AD, et al., 2020,
Nonfullerene-Based Organic Photodetectors for Ultrahigh Sensitivity Visible Light Detection
, ACS APPLIED MATERIALS & INTERFACES, Vol: 12, Pages: 48836-48844, ISSN: 1944-8244- Cite
- Citations: 47
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Journal articleSeitkhan A, Neophytou M, Hallani RK, et al., 2020,
A Multilayered Electron Extracting System for Efficient Perovskite Solar Cells
, ADVANCED FUNCTIONAL MATERIALS, Vol: 30, ISSN: 1616-301X- Author Web Link
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- Citations: 23
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Journal articleKosco J, Moruzzi F, Willner B, et al., 2020,
Photocatalysts Based on Organic Semiconductors with Tunable Energy Levels for Solar Fuel Applications
, ADVANCED ENERGY MATERIALS, Vol: 10, ISSN: 1614-6832- Author Web Link
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- Citations: 149
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