Michael R Wasielewski
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Explore the profile of Michael R Wasielewski including associated specialties, affiliations and a list of published articles.
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448
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4279
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Recent Articles
1.
Kirlikovali K, Gomez-Torres A, Sauza-de la Vega A, Daru A, Krzyaniak M, Garg P, et al.
Inorg Chem
. 2025 Mar;
PMID: 40029039
Uranium metallocenes have played a pivotal role in advancing the understanding of low-valent uranium chemistry since the inception of this field, and they still find continued use today. Functionalization strategies...
2.
Williams M, Palmer J, Tyndall S, Chen Y, Young R, Garzon-Ramirez A, et al.
J Chem Phys
. 2025 Jan;
162(2.
PMID: 39783977
Organic donor-acceptor (D-A) cocrystals are gaining attention for their potential applications in optoelectronic devices. This study explores the dynamics of charge transfer (CT) and triplet exciton formation in various D-A...
3.
Mahoney E, Boudjelel M, Shavel H, Krzyaniak M, Wasielewski M, Malapit C
J Am Chem Soc
. 2025 Jan;
147(2):1381-1386.
PMID: 39772556
Recent advances in redox flow batteries have made them a viable option for grid-scale energy storage, however they exhibit low energy density. One way to boost energy density is by...
4.
Privitera A, Chiesa A, Santanni F, Carella A, Ranieri D, Caneschi A, et al.
J Am Chem Soc
. 2024 Dec;
147(1):331-341.
PMID: 39681297
Photoexcited organic chromophores appended to molecular qubits can serve as a source of spin initialization or multilevel qudit generation for quantum information applications. So far, this approach has been primarily...
5.
Peinkofer K, Williams M, Mantel G, Phelan B, Young R, Wasielewski M
J Am Chem Soc
. 2024 Dec;
146(50):34934-34942.
PMID: 39655818
Singlet exciton fission (SF) and symmetry-breaking charge separation (SB-CS) are both photophysical processes that can occur between two organic chromophores and are both of interest to improve solar energy conversion....
6.
Williams M, Palmer J, Young R, Wasielewski M
J Am Chem Soc
. 2024 Nov;
146(49):34130-34140.
PMID: 39577008
Understanding charge transfer (CT) dynamics in donor-acceptor (D-A) cocrystals is important for the development of efficient organic photovoltaic and electronic materials. This study explores the photogenerated CT states of supramolecular...
7.
Schultz J, Yuly J, Arsenault E, Parker K, Chowdhury S, Dani R, et al.
Chem Rev
. 2024 Oct;
124(21):11641-11766.
PMID: 39441172
Coherence refers to correlations in waves. Because matter has a wave-particle nature, it is unsurprising that coherence has deep connections with the most contemporary issues in chemistry research (e.g., energy...
8.
Brown P, Qiu Y, Latawiec E, Phelan B, Tcyrulnikov N, Palmer J, et al.
J Phys Chem A
. 2024 Oct;
128(43):9371-9382.
PMID: 39413291
We report on new donor-chromophore-acceptor triads and where the BDX donor is 2,2,6,6-tetramethylbenzo[1,2-;4,5-]bis[1,3]dioxole, the ANI chromophore is 4-(-piperidinyl)naphthalene-1,8-dicarboximide, the NDI acceptor is naphthalene-1,8:4,5-bis(dicarboximide), and xy is a 2,5-xylyl spacer. The...
9.
Moisanu C, Eckvahl H, Stern C, Wasielewski M, Dichtel W
J Am Chem Soc
. 2024 Oct;
PMID: 39361631
Molecular electron spin qubits arranged in precise arrays have great potential for use in quantum information science applications. Molecular qubits are synthetically versatile and can be placed in ordered arrangements...
10.
Kopp S, Nakamura S, Phelan B, Poh Y, Tyndall S, Brown P, et al.
J Am Chem Soc
. 2024 Sep;
146(40):27935-27945.
PMID: 39332019
Optical-spin interfaces that enable the photoinitialization, coherent microwave manipulation, and optical read-out of ground state spins have been studied extensively in solid-state defects such as diamond nitrogen vacancy (NV) centers...