Sunday, May 31, 2026

 

Addition of phosphonate groups boosts performance of organic electrochemical transistors



The approach improves both ion and electrical charge transport in conductive polymer films




Institute of Science Tokyo

Electrochemical phosphonylation improves organic electrochemical transistor (OECT) performance 

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Researchers introduced phosphonate ester groups into semicrystalline conductive polymer films using a tunable electrochemical method. By controlling the degree of functionalization, they improved the balance between electronic charge transport and ionic conductivity, thereby enhancing OECT performance.

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Credit: Institute of Science Tokyo





By electrochemically introducing phosphonate ester groups into conductive polymer films, researchers at Science Tokyo have addressed a fundamental trade-off between electronic charge transport and ion transport, overcoming a key performance limitation in organic electrochemical transistors (OECTs). The method enables precise tuning of polymer properties and can be applied to semicrystalline materials without redesigning monomers, supporting the development of improved biosensors and flexible electronic devices.

Organic electrochemical transistors (OECTs) have garnered increasing attention for wearable electronics and biosensors due to their low-voltage operation. They consist of an electrolyte, a channel made from an organic semiconductor, and gate, source, and drain electrodes. By controlling the gate voltage, researchers can regulate the movement of ions between the electrolyte and the conductive polymer channel. However, OECTs have faced a key limitation: it is difficult to efficiently transport both electronic charges and ions simultaneously, which restricts device performance.

Now, a research team from Institute of Science Tokyo (Science Tokyo), Japan, has developed a new strategy to overcome this problem by electrochemically introducing phosphonate ester groups into conductive polymer films. Their approach, published online in the journal Angewandte Chemie International Edition on April 18, 2026, enables precise control over the balance between electronic charge transport and ionic conductivity, leading to improved transistor performance.

The study was led by Professor Shinsuke Inagi from the Department of Chemical Science and Engineering, School of Materials and Chemical Technology, Science Tokyo, together with Assistant Professor Kosuke Sato and Dr. Kohei Taniguchi, who was a graduate student at the time of the study, from the same institute.

“Achieving the coexistence of smooth charge transport and affinity to hydrophilic ions is difficult; thus, the molecular design of the active layers in OECTs is still under development,” says Inagi.

The trade-off between charge transport and ion transport largely arises from the balance between the hydrophilic (water-attracting) and hydrophobic (water-repelling) characteristics of the polymer film. Polymers with hydrophilic side chains can improve ion transport, but their synthesis often requires multiple steps. Moreover, they can absorb water from the air and trap charges, reducing electronic charge transport. In contrast, hydrophobic polymers typically show poor ion transport because hydrophilic ions have difficulty penetrating them.

The proposed method balances these properties by introducing hydrophilic phosphonate ester groups into existing hydrophobic conductive polymers without redesigning the polymer backbone itself.

The researchers electrochemically oxidized two semicrystalline conductive polymers, PBTTT (poly[2,5-bis(3-tetradecylthiophen-2-yl)thieno[3,2-b]thiophene]) and DPP-DTT (diketopyrrolo-pyrrole-dithienylthieno[3,2-b]thiophene­]), and reacted them with trialkyl phosphite to attach phosphonate ester groups directly onto the polymer backbone. Because the rigid crystalline structure of the polymers limited phosphite penetration, the researchers incorporated an ion-conducting material called Nafion into the polymer films. This created pathways that allowed phosphite molecules to penetrate more effectively into the tightly packed polymer structure.

By carefully controlling the amount of electric charge passed during the electrochemical reaction, the researchers were able to precisely tune the degree of functionalization or the amount of phosphonate ester incorporated into the films. When the modified polymers were used as active layers in OECT devices, the researchers observed significant improvements in transistor performance. OECT performance is commonly evaluated using the product µC*, where µ represents how easily electronic charges move through the material and C* reflects how effectively ions can enter and interact with the polymer film.

The researchers found that moderate levels of phosphonate ester incorporation, corresponding to a degree of functionalization (DOF) of approximately 0.06–0.16, produced the best results. For PBTTT, a DOF of 0.12 increased µC* to 90 mS cm⁻¹, while for DPP-DTT, the µC* value nearly doubled at a DOF of 0.06. However, excessive phosphonate incorporation reduced performance because it began to interfere with efficient electronic charge transport.

Importantly, the study overcomes a major limitation of previous phosphonylation methods, which mainly worked with amorphous polymers. By extending the approach to rigid semicrystalline polymers, the researchers broadened the range of materials available for high-performance OECT development.

“Our results demonstrate that post-functionalization of existing semicrystalline polymers is a viable strategy for balancing ionic and electronic transport without requiring entirely new monomer design and synthesis,” says Inagi.

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About Institute of Science Tokyo (Science Tokyo)

Institute of Science Tokyo (Science Tokyo) was established on October 1, 2024, following the merger between Tokyo Medical and Dental University (TMDU) and Tokyo Institute of Technology (Tokyo Tech), with the mission of “Advancing science and human wellbeing to create value for and with society.”

 

 

 

Good managers can be as important as the entire team



UNTIL THE TEAM GOES ON STRIKE

University of Gothenburg





A good manager can be just as important to a company’s performance as the combined productive capacity of its employees. This is shown in a new international study, published in The Quarterly Journal of Economics. The study also shows that those who are most eager to become managers are not necessarily the best suited to the role.

Research has previously shown that leadership plays an important role in organisational performance. Good managers can increase productivity by monitoring work, allocating tasks effectively and motivating employees. At the same time, it has been difficult to measure managers’ actual impact, as managers in real organisations are not appointed at random. This makes it difficult to determine whether a team’s performance is due to the manager’s leadership or to the employees’ skills.

A method for measuring managers’ contributions
In the new study, the researchers developed a method to isolate the manager’s contribution to team performance. In an international laboratory experiment, managers were randomly assigned to multiple different teams while also controlling for team member skill. This enabled the researchers to distinguish between the manager’s leadership ability from both the manager’s own productivity and the capacity of the team. In the experiment, the teams were tasked with solving three different types of problems under the manager’s leadership.

“We find that the manager’s overall leadership ability is roughly as important for team performance as the total productive capacity of the employees,” says Joseph Vecci, Associate Professor of Economics at the School of Business, Economics and Law at the University of Gothenburg and one of the researchers behind the study.

Economic decision-making more important than charisma
The results also show that managers’ success cannot primarily be explained by personality or demographic factors.

“Good leadership is often associated with self-confidence, charisma or personality, but our results show that measures that are more closely associated with on-the-job tasks are much stronger indicators of manager success,” says Joseph Vecci.

This was also demonstrated in a related field study by the same researchers, in which managers at a large retail chain were studied. When manager quality increased from average to good, annual sales rose by 25 per cent.

The researchers also examined how managers are selected. The results show that people who are most motivated to become managers do not necessarily perform best in the role. The study also shows that women expressed interest in the managerial role to a lesser extent than men, even though they performed just as well when randomly assigned to it.

The researchers argue that the findings support the use of more structured and competence-based promotion processes.

About the study
The study, “How Do You Identify a Good Manager”, was published in the May issue of The Quarterly Journal of Economics.

Link: https://academic.oup.com/qje/advance-article/doi/10.1093/qje/qjag004/8435315

The experiment was conducted at the Essex University Economics Lab in the United Kingdom. A total of 555 people took part, and each manager was randomly assigned to several different teams. In total, the experiment included 728 groups.

The experiment was supplemented with an analysis of participants’ career development using data from LinkedIn. The study shows that those who performed well as managers in the experiment were promoted more often than other participants.

As a complement, the researchers also conducted a field study at a large retail chain in Colombia with 225 managers. Like the laboratory experiment, it showed that economic decision-making ability has the greatest impact on performance.

Microplastics alter the body’s response to allergens



Study using a mouse model demonstrates the impact of PET particles on the immune response and airway inflammation




Medical University of Vienna





Microplastics (MP) are the subject of intensive medical research, but little is yet known about their effects on the immune system. A study led by the Medical University of Vienna now shows that tiny particles of polyethylene terephthalate (PET) remain in the lungs of mice, can exacerbate respiratory tract inflammation and alter the immune responses associated with allergies. The findings were published in the "Journal of Hazardous Materials Advances" and once again highlight the health implications of the increasing environmental burden posed by microplastics.

As part of the study, the research team led by Michelle Epstein (Department of Dermatology, Experimental Allergy Laboratory, MedUni Vienna) investigated the effects of PET particles of varying sizes and dosage forms in a mouse model. PET (polyethylene terephthalate) is one of the most widely used plastics worldwide and is used, among other things, in packaging, drinks bottles, textiles and medical materials.

Following a single administration of medium-sized PET microplastics via the respiratory tract, the researchers found that the particles remained detectable in the lungs for at least 14 days. During this period, an inflammatory response occurred, characterised by increased migration of lymphocytes and eosinophils – immune cells typically involved in allergic reactions. When the administration of PET-MPs was combined with ragweed pollen, a common respiratory allergen, respiratory inflammation was exacerbated under certain conditions. In further experiments, in which PET-MPs were introduced via the abdominal cavity in combination with other allergens, an altered systemic immune response was observed: the PET-MPs exacerbated the inflammation and influenced the antibody response against the allergen.

Active influence on immune responses
"Our study shows that PET microplastics do not simply remain in the body, but actively influence immune responses involved in the development and exacerbation of allergic reactions and inflammation," explains study lead Michelle Epstein. The researchers emphasise, however, that the results were obtained in mouse models and cannot be directly extrapolated to real-world exposure conditions in humans. "Nevertheless, they provide important insights into the potential immunological effects of microplastics, which once again highlight the health relevance of this environmental burden and must be investigated in further studies," says Epstein.

 

Making chemistry greener: The 2026 Gerhard Ertl Lecture Award goes to Professor Marc Koper




Fritz Haber Institute of the Max Planck Society
Gerhard Ertl Lecture Award 2026 

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Prof. Marc T. M. Koper receives the 2026 Gerhard Ertl Lecture Award for his pioneering research in the field of electrochemistry, catalysis and surface science.

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Credit: © Marc Koper





We are pleased to announce that Prof. Marc Koper from the University of Leiden, Netherlands has been selected for this year’s Gerhard Ertl Lecture Award honoring his scientific achievements in the fields of electrochemistry and catalysis, which have been and are crucial in advancing the transition to sustainable energy technologies and green chemistry. We extend our warmest congratulations to him and look forward to his visit and lecture in December.

Prof. Koper is a pioneer in the field of electrochemistry, the branch of chemistry that leverages electricity to produce or break down chemical compounds. He is researching how electrochemical redox reactions can be controlled and catalyzed for sustainable energy and chemistry. As world-leading researchers in the electrochemical conversion of carbon dioxide into hydrocarbons, he and his team developed theoretical models for the formation of hydrocarbons on copper surfaces, thereby explaining copper’s pivotal role as a catalyst. His team has a strong expertise in microscopy and spectroscopy and combines sophisticated experimental methods, theory, and the principles of catalyst design. This approach enables them to gain detailed insights into the reactions at the interface of electrode and electrolyte and how catalysts enhance them. Their theoretical considerations help, for example, to understand and predict the activity and selectivity of electrode surfaces. In simpler words, this research reveals how one can achieve optimal yield of a specific chemical product while keeping the energetic costs at bay. Electrochemistry and catalysis hence play a central role in the development and scaling of technologies for harnessing renewable energy, as well as in the transition to a resource-efficient chemistry. Koper’s basic research provides crucial insights in this context.

Prof. Koper has been active in electrochemistry since his university studies. He earned his PhD in 1994 under Prof. Jan H. Sluyters at Utrecht University, with a dissertation on instability, oscillations, and chaos in electrochemical reactions. He then pursued postdoctoral research with Prof. Wolfgang Schmickler at the University of Ulm, followed by work with Prof. Rutger van Santen at Eindhoven University of Technology starting in 1997. In 2002, he became an assistant professor at Eindhoven University of Technology, before being appointed professor of surface chemistry and catalysis at Leiden University in 2005.

Koper's research has received numerous honors, including the 2021 Spinoza Prize, the Netherlands' highest scientific honor. He has served as president of the International Society of Electrochemistry and is a member of the Royal Netherlands Academy of Arts and Sciences.

Established in 2008 by the Fritz Haber Institute of the Max Planck Society and Berlin’s three universities (Freie Universität Berlin, Technische Universität Berlin and Humboldt Universität zu Berlin), the annual Ertl Lecture Award honors outstanding catalysis researchers in tribute to former FHI director Gerhard Ertl’s 2007 Nobel Prize in Chemistry. The award is decided by a commission comprising Berlin university members, namely Joachim Sauer (Humboldt Universität), Matthias Drieß (Technische Universität), and Eckart Rühl (Freie Universität) together with the directors of the Fritz Haber Institute. Gerhard Ertl advises the commission on the selection. Awardees visit the FHI to deliver a keynote lecture.

Commemorating the anniversary of Gerhard Ertl's Nobel Prize, the award ceremony, as well as the award lecture and reception, are scheduled for December 10, 2026.

 

Global inequalities in type 1 diabetes are widening among children and adolescents




Science China Press
Widening global inequalities in type 1 diabetes mortality and years of life lost (YLLs) among children and adolescents 

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This figure illustrates global income-related health inequalities in type 1 diabetes mellitus (T1DM)-related mortality and years of life lost (YLLs) among children and adolescents in 1990 and 2021, based on T1D Index data. Lower-income countries carried a disproportionately greater burden of T1DM mortality and YLLs, and these inequalities widened over time. Absolute inequalities were assessed using the slope index of inequality (SII), while relative inequalities were evaluated using the relative concentration index (RCI).

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Credit: ©Science Bulletin





A new global analysis has revealed that the burden of type 1 diabetes (T1DM) among children and adolescents has increased substantially over the past three decades, while health inequalities between high- and low-income countries continue to widen.

The study analysed data from the Type 1 Diabetes Index, the Global Burden of Disease Study, and International Diabetes Federation datasets to assess trends in T1DM incidence, prevalence, mortality, and years of life lost (YLLs) among individuals aged 0–19 years between 1990 and 2021.

Researchers found that the global incidence of T1DM nearly tripled during the study period, increasing from 2.71 to 7.42 cases per 100,000 population. Prevalence also rose sharply, from 20.75 to 56.59 cases per 100,000 population. In 2021, North America and Europe reported the highest incidence and prevalence rates, while African regions experienced the highest burden of years of life lost.

The researchers observed that inequalities in T1DM outcomes worsened over time. Lower-income countries carried a disproportionately large share of T1DM-related deaths and YLLs, reflecting major disparities in access to insulin treatment, glucose monitoring, healthcare resources, and diabetes management systems. In 2021, countries in the lower half of the global income distribution accounted for approximately 80% of the T1DM mortality burden and 86% of the T1DM YLL burden.

The researchers noted that although disease burden estimates varied somewhat across international databases, the overall trends were highly consistent, particularly with respect to the increasing incidence and prevalence of T1DM and the widening disparities in mortality and YLLs between richer and poorer countries. These findings highlight the urgent need for globally coordinated efforts to improve diabetes care in resource-limited settings. Expanding insulin accessibility, strengthening disease registries, improving glucose monitoring, and supporting long-term care for children and adolescents with T1DM may help reduce growing global inequalities.

The study was conducted by researchers from Xi’an Jiaotong University, Monash University, the Chinese Center for Disease Control and Prevention, and collaborating institutions.

 

Citizens as political actors, not individual consumers: new study calls for tighter advertising regulations




Universitat Autonoma de Barcelona






Commercial marketing oriented toward sustainability is not compatible with degrowth, even when it promotes consuming less. That is the conclusion of a study by the Institute of Environmental Science and Technology of the Universitat Autònoma de Barcelona (ICTA-UAB), Spain, and the London School of Economics and Political Science.

The research, published in PLOS Sustainability and Transformation, argues that regulations should target not only advertising for high-emission goods and activities — such as meat or air travel — but also subtler campaigns that encourage what is seen as “better” or “more responsible” forms of consumption. To achieve this, the authors propose communication strategies led by non-commercial actors that empower communities, rather than focusing solely on individual consumer behavior.

Degrowth proposes an equitable and democratic reduction of production and consumption in the world’s wealthiest countries of the Global North, with the aim of improving collective well-being and promoting global justice within planetary boundaries. In contrast, green growth seeks to reconcile economic growth with environmental sustainability through technological innovation and efficiency. Although academic debate around both agendas has grown considerably, little was known about how to communicate them effectively at the individual level and which actors are best suited to do so.

During the research, led by Dallas O'Dell together with Frédéric Basso and Ganga Shreedhar, the team conducted two online experiments with millennial participants in the United Kingdom. In the first, researchers tested marketing messages from a sustainable bath-products brand, comparing a green-growth approach — offering more sustainable choices without limiting consumption — with a degrowth approach — consuming less in order to live better. In the second, a non-commercial organization presented the same frameworks in a citizenship context, exploring support for environmental policies and values related to economic growth.

The results point to a clear tension between what sounds persuasive in theory and what actually works in practice. In the commercial setting, the sufficiency-oriented marketing messages did not meaningfully distinguish degrowth from green growth in terms of purchase intentions, willingness to donate time, or broader consumption-related outcomes, suggesting that advertising itself may activate consumer schemas that work against messages about limits. Rather than encouraging a genuine shift toward sufficiency, the commercial frame appeared to reproduce the logic of buying, even when the message itself pointed toward consuming less.

By contrast, the non-commercial, citizenship-based framing produced a more nuanced pattern. Degrowth messaging was more likely to shift participants toward positions that question economic growth, while green-growth framing tended to generate higher support for environmental policies overall. This suggests that degrowth may be more effective at shaping values and worldviews, whereas green growth may still be better at securing short-term policy support. At the same time, the findings indicate that framing degrowth through system-level problems and reduction-based solutions can also reduce people’s sense of personal agency, potentially weakening their willingness to engage in more active forms of collective change.

Taken together, the study suggests that communication about degrowth should not rely on commercial marketing logics. Instead, the authors argue for messages led by non-commercial institutions that speak to citizens rather than consumers and that connect with deeper values and shared visions of social change. They also emphasize the need for broader policy tools — including tighter regulation of advertising — so that the responsibility for reducing consumption does not rest on individuals alone. Other structural measures, such as shorter working hours and limits on fossil fuels, are also necessary if self-limitation is to become socially and politically feasible.

The authors further point to an important research question for future studies: whether framing environmental problems as a matter of system failure may unintentionally discourage more active political engagement, such as activism, information-seeking, or advocacy for policy change. Exploring that possibility, they suggest, would help clarify how to communicate degrowth without turning a critique of the system into a sense of helplessness.