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Justin R Caram

Explore the profile of Justin R Caram including associated specialties, affiliations and a list of published articles. Areas
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Articles 58
Citations 759
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Recent Articles
1.
Ahmed T, Tan X, Li B, Cook E, Williams J, Tiano S, et al.
ACS Nano . 2025 Jan; 19(3):3944-3952. PMID: 39808109
Dimension-engineered synthesis of atomically thin II-VI nanoplatelets (NPLs) remains an open challenge. While CdSe NPLs have been made with confinement ranging from 2 to 11 monolayers (ML), CdTe NPLs have...
2.
Wojcik P, Khvorost T, Lao G, Zhu G, Macias Jr A, Caram J, et al.
J Phys Chem A . 2024 Dec; 129(8):1929-1940. PMID: 39700511
A novel molecular structure that bridges the fields of molecular optical cycling and molecular photoswitching is presented. It is based on a photoswitching molecule azobenzene functionalized with one and two...
3.
Bradbury N, Li B, Allen T, Caram J, Neuhauser D
J Chem Phys . 2024 Oct; 161(14). PMID: 39377322
We introduce an individually fitted screened-exchange interaction for the time-dependent Hartree-Fock (TDHF) method and show that it resolves the missing binding energies in polymethine organic dye molecules compared to time-dependent...
4.
Li B, Dickerson C, Shin A, Zhao C, Shen Y, He Y, et al.
Chem Sci . 2024 Aug; 15(31):12451-12458. PMID: 39118624
Achieving ultranarrow absorption linewidths in the condensed phase enables optical state preparation of specific non-thermal states, a prerequisite for quantum-enabled technologies. The 4f orbitals of lanthanide(iii) complexes are often referred...
5.
Shin A, Zhao C, Shen Y, Dickerson C, Li B, Roshandel H, et al.
Science . 2024 Aug; 385(6709):651-656. PMID: 39116250
The energetic disorder induced by fluctuating liquid environments acts in opposition to the precise control required for coherence-based sensing. Overcoming fluctuations requires a protected quantum subspace that only weakly interacts...
6.
Sica A, Hua A, Coffey B, Anderson K, Coffey L, Nguyen B, et al.
Phys Chem Chem Phys . 2024 Aug; 26(32):21850-21860. PMID: 39102276
The total photon economy of a chromophore molecular species represents a study of how absorbed photons partition among various electronic states and ultimately dissipate their excited energy into the environment....
7.
Ennist N, Wang S, Kennedy M, Curti M, Sutherland G, Vasilev C, et al.
Nat Chem Biol . 2024 Jun; 20(7):906-915. PMID: 38831036
Natural photosystems couple light harvesting to charge separation using a 'special pair' of chlorophyll molecules that accepts excitation energy from the antenna and initiates an electron-transfer cascade. To investigate the...
8.
Meador W, Lin E, Lim I, Friedman H, Ndaleh D, Shaik A, et al.
Nat Chem . 2024 Mar; 16(6):970-978. PMID: 38528102
In vivo fluorescence imaging in the shortwave infrared (SWIR, 1,000-1,700 nm) and extended SWIR (ESWIR, 1,700-2,700 nm) regions has tremendous potential for diagnostic imaging. Although image contrast has been shown...
9.
Ramos P, Friedman H, Li B, Garcia C, Sletten E, Caram J, et al.
J Phys Chem Lett . 2024 Feb; 15(7):1802-1810. PMID: 38329913
Near infrared (NIR, 700-1000 nm) and short-wave infrared (SWIR, 1000-2000 nm) dye molecules exhibit significant nonradiative decay rates from the first singlet excited state to the ground state. While these...
10.
Deshmukh A, Zheng W, Chuang C, Bailey A, Williams J, Sletten E, et al.
Nat Chem . 2024 Feb; 16(5):800-808. PMID: 38316987
Cryo-electron microscopy has delivered a resolution revolution for biological self-assemblies, yet only a handful of structures have been solved for synthetic supramolecular materials. Particularly for chromophore supramolecular aggregates, high-resolution structures...