Benjamin Doughty
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Explore the profile of Benjamin Doughty including associated specialties, affiliations and a list of published articles.
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66
Citations
156
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Recent Articles
11.
Ma Y, Premadasa U, Bryantsev V, Miles A, Ivanov I, Elgattar A, et al.
Phys Chem Chem Phys
. 2024 Jan;
26(5):4062-4070.
PMID: 38224171
Direct access to - photoisomerization in a metastable state photoacid (mPAH) remains challenging owing to the presence of competing excited-state relaxation pathways and multiple transient isomers with overlapping spectra. Here,...
12.
Curtis A, Manara J, Doughty B, Beaumont H, Leathes J, Putnis S
Knee
. 2024 Jan;
48:287.
PMID: 38177012
No abstract available.
13.
Curtis A, Manara J, Doughty B, Beaumont H, Leathes J, Putnis S
Knee
. 2023 Dec;
46:27-33.
PMID: 38039840
Background: Knee osteoarthritis in the presence of severe obesity (BMI ≥ 40) is becoming an increasing presentation to healthcare services. When progressing to arthroplasty, this group is known to have...
14.
Marinov G, Doughty B, Kundaje A, Greenleaf W
bioRxiv
. 2023 Nov;
PMID: 37961278
Histone proteins have traditionally been thought to be restricted to eukaryotes and most archaea, with eukaryotic nucleosomal histones deriving from their archaeal ancestors. In contrast, bacteria lack histones as a...
15.
Scott H, Bolmatov D, Premadasa U, Doughty B, Carrillo J, Sacci R, et al.
ACS Appl Mater Interfaces
. 2023 Sep;
15(37):44533-44540.
PMID: 37696028
Phospholipid bilayers can be described as capacitors whose capacitance per unit area (specific capacitance, ) is determined by their thickness and dielectric constant─independent of applied voltage. It is also widely...
16.
Fomich M, Dia V, Premadasa U, Doughty B, Krishnan H, Wang T
J Agric Food Chem
. 2023 Jul;
71(30):11587-11598.
PMID: 37466256
Identifying and developing ice recrystallization inhibitors from sustainable food proteins such as soy protein isolate (SPI) can lead to practical applications in both pharmaceutical and food industries. The objective of...
17.
Premadasa U, Bocharova V, Lin L, Genix A, Heller W, Sacci R, et al.
J Phys Chem B
. 2023 May;
127(21):4886-4895.
PMID: 37216432
Liquid/liquid (L/L) interfaces play a key, yet poorly understood, role in a range of complex chemical phenomena where time-evolving interfacial structures and transient supramolecular assemblies act as gatekeepers to function....
18.
Premadasa U, Bocharova V, Miles A, Stamberga D, Belony S, Bryantsev V, et al.
Angew Chem Int Ed Engl
. 2023 May;
62(29):e202304957.
PMID: 37198131
One of the grand challenges underlying current direct air capture (DAC) technologies relates to the intensive energy cost for sorbent regeneration and CO release, making the massive scale (GtCO /year)...
19.
Premadasa U, Dong D, Stamberga D, Custelcean R, Roy S, Ma Y, et al.
ACS Appl Mater Interfaces
. 2023 Mar;
15(15):19634-19645.
PMID: 36944180
As fossil fuels remain a major source of energy throughout the world, developing efficient negative emission technologies, such as direct air capture (DAC), which remove carbon dioxide (CO) from the...
20.
Scott H, Bolmatov D, Podar P, Liu Z, Kinnun J, Doughty B, et al.
Proc Natl Acad Sci U S A
. 2022 Dec;
119(50):e2212195119.
PMID: 36469762
Biological supramolecular assemblies, such as phospholipid bilayer membranes, have been used to demonstrate signal processing via short-term synaptic plasticity (STP) in the form of paired pulse facilitation and depression, emulating...