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Transient Batteries: A Promising Step Towards Powering Green Electronics
Transient electronics is an emerging class of innovative technology wherein electronic devices undergo controlled degradation processes after a period of stable operation, leaving no toxic products behind. This technology offers exciting opportunities in research areas of green electronics, temporary biomedical implants, data-secure hardware systems, and many others. However, one major challenge with these devices is their rigid and bulky batteries that contain toxic chemicals and are not at all degradable. So, to realize autonomous and self-sufficient transient electronics, the development of transient batteries is a pre-requisite. This review provides an overview of the advancements in the field of transient batteries, their materials, output performance, transience behaviour, and a few potential applications
Trends in Direct Breath Analysis by Secondary Electrospray Ionization Mass Spectrometry for Clinical Applications
Exhaled breath can reveal insights about the metabolic state of the human body through the endo- and exogenous compounds it contains. The extent of detectable compounds, however, was revolutionized by the application of mass spectrometry. More specifically, secondary electrospray ionization high-resolution mass spectrometry (SESI-HRMS) enables the detection of a broad range of breath-derived compounds simultaneously and with high sensitivity. Together with its rapid and non-invasive nature, direct breath analysis by SESI-HRMS raised particular interest for clinical applications. Over the past years, various clinical trials successfully demonstrated the technology´s capability for biomarker discovery in exhaled breath in adults and more recently in children. Current challenges lie within the potential translation of SESI-HRMS into clinical settings and the requirements therein, such as biomarker identification and validation, which became a focus of more recent studies.
 
The Chemistry of Plant-Insect Egg Interactions
Insect eggs deposited on plants constitute a threat that has led to the evolution of sophisticated defenses. The interactions between insect eggs and plants are governed by a diverse variety of chemicals that inform butterflies about suitable hosts, repel gravid females, alert plants about the presence of an egg, act as signal molecules to induce defenses, directly impair egg development, and indirectly attract egg parasitoids. In recent years, significant progress has been made on the chemical identification, perception and role of compounds associated with oviposition. Knowledge on the genetic basis of oviposition-induced responses is also accumulating. An emerging theme is that insect eggs are not passive structures on leaves but induce complex responses that result from million years of coevolution
A Short History of Topoisomerases at Actelion Pharmaceuticals
The discovery of novel antibacterials devoid of cross resistance is of utmost importance. At the same time, biological pathways and processes suitable to be targeted are limited. At Actelion Pharmaceuticals we decided to work on novel bacterial topoisomerase inhibitors (NBTI) to discover new antibiotics with broad spectrum activity and limited resistance development for use against severe hospital infections. This paper summarizes the learnings and results of our efforts in the field, which led to the discovery of multiple chemical classes with potent Gram-negative activity and ultimately to the selection of several compounds that underwent preclinical profiling
Supramolecular Engineering of Hybrid Materials in Photovoltaics and Beyond
Solar-to-electric energy conversion has provided one of the most powerful renewable energy technologies. In particular, hybrid organic-inorganic halide perovskites have recently emerged as leading thin-film semiconductors for new generation photovoltaics. However, their instability under operating conditions remains an obstacle to their application. To address this, we relied on supramolecular engineering in the development of organic systems that can interact with the surface of hybrid perovskites through different noncovalent interactions and enhance their operational stabilities. Moreover, we have utilized the uniquely soft yet crystalline structure of hybrid perovskites and their mixed ionic-electronic conductivity to provide a platform for advancing their functionality beyond photovoltaics. This account reviews our recent progress in supramolecular engineering of hybrid perovskites in photovoltaics and discusses their perspectives in the development of smart technologies
Career Workshop at ETH Zurich: How to land your first job when moving from academia to industry: Conference Report
ILMAC Lausanne - Successful endorsement of the venue for the life sciences sector in French-speaking Switzerland
The successful fourth edition of ILMAC LAUSANNE ended on Thursday, September 29, 2022, with a thoroughly satisfied group of participants. More than 2,000 professionals came together in Hall 7 of Expo Beaulieu Lausanne over the two days of the trade fair. They were able to get an impressive live insight into applications, systems, and services in the laboratory, industry, and research sectors from 160 exhibitors and more than 30 specialist presentations and workshops