Jeremy Chan

Jeremy Chan
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Jeremy verified their affiliation via an institutional email.
Verified
Jeremy verified their affiliation via an institutional email.
University of Naples Federico II | UNINA · Department of Biology

Doctor of Philosophy

About

4
Publications
1,841
Reads
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158
Citations
Additional affiliations
November 2022 - December 2023
University of Copenhagen
Position
  • Postdoctoral Researcher
January 2016 - September 2022
University of Washington
Position
  • PhD Candidate
Education
January 2016 - September 2022
University of Washington
Field of study
  • Chemical ecology, Atmospheric Chemistry
January 2012 - May 2014
University of Victoria
Field of study
  • Chemistry, Biology

Publications

Publications (4)
Article
Full-text available
There is growing concern about sensory pollutants affecting ecological communities. Anthropogenically enhanced oxidants [ozone (O 3 ) and nitrate radicals (NO 3 )] rapidly degrade floral scents, potentially reducing pollinator attraction to flowers. However, the physiological and behavioral impacts on pollinators and plant fitness are unknown. Usin...
Article
Full-text available
Mosquitoes are important vectors of disease and require sources of carbohydrates for reproduction and survival. Unlike host-related behaviors of mosquitoes, comparatively less is understood about the mechanisms involved in nectar-feeding decisions, or how this sensory information is processed in the mosquito brain. Here we show that Aedes spp. mosq...
Article
Full-text available
We present an electrospray ion source coupled to an orthogonal continuous-flow atmospheric pressure chemical ionization region. The source can generate intense and stable currents of several specific reagent ions using a range of salt solutions prepared in methanol, thereby providing both an alternative to more common radioactive ion sources and al...
Article
Full-text available
We present an electrospray ion source coupled to an orthogonal continuous-flow atmospheric pressure chemical ionization region. The source can generate intense and stable currents of several specific reagent ions using a range of salt solutions prepared in methanol, thereby providing both an alternative to more common radioactive ion sources and al...

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