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James Nicolas Pagaduan

Explore the profile of James Nicolas Pagaduan including associated specialties, affiliations and a list of published articles. Areas
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Recent Articles
1.
Pagaduan J, Hight-Huf N, Zhou L, Dix N, Premadasa U, Doughty B, et al.
ACS Cent Sci . 2024 Sep; 10(8):1629-1639. PMID: 39220689
Understanding the electronic properties resulting from soft-hard material interfacial contact has elevated the utility of functional polymers in advanced materials and nanoscale structures, such as in work function engineering of...
2.
Bhardwaj A, Okoroanyanwu U, Pagaduan J, Fan W, Watkins J
Small . 2024 Mar; 20(33):e2402049. PMID: 38554015
Supercapacitors demonstrate promising potential for flexible, multi-functional energy storage devices; however, their widespread adoption is confronted by fabrication challenges. To access a combination of desirable device qualities such as flexibility,...
3.
Saha D, Yu H, Wang J, Prateek , Chen X, Tang C, et al.
ACS Appl Mater Interfaces . 2024 Mar; 16(11):13729-13744. PMID: 38457643
Current electrocatalysts for oxygen evolution reaction (OER) are either expensive (such as IrO, RuO) or/and exhibit high overpotential as well as sluggish kinetics. This article reports mesoporous earth-abundant iron (Fe)-nitrogen...
4.
Senger C, Fan X, Pagaduan J, Zhang X, Ping J, Katsumata R
Small . 2022 Dec; 19(10):e2206295. PMID: 36549897
Overcoming throughput challenges in current graphene defect healing processes, such as conventional thermal annealing, is crucial for realizing post-silicon device fabrication. Herein, a new time- and energy-efficient method for defect...
5.
Yang Z, Snyder D, Pagaduan J, Waldman A, Crosby A, Emrick T
J Am Chem Soc . 2022 Nov; 144(48):22059-22066. PMID: 36442142
Stabilization of fluid droplets, classically as oil-in-water or water-in-oil emulsions, is typically conducted using molecular surfactants or small particulates that localize at oil-water interfaces. In this paper, we describe a...
6.
Hight-Huf N, Pagaduan J, Katsumata R, Emrick T, Barnes M
J Phys Chem Lett . 2022 May; 13(21):4794-4799. PMID: 35613709
While extrinsic factors, such as substrates and chemical doping, are known to strongly influence visible photoemission from monolayer MoS, key fundamental knowledge for p-type polymeric dopants is lacking. We investigated...
7.
Bhardwaj A, Pagaduan J, Yu Y, Einck V, Nuguri S, Katsumata R, et al.
ACS Appl Mater Interfaces . 2021 Dec; 13(51):61027-61038. PMID: 34913685
Carbonization by rapid thermal annealing (RTA) of precursor films structured by a brush block copolymer-mediated self-assembly enabled the preparation of large-pore (40 nm) ordered mesoporous carbon (MPC)-based micro-supercapacitors within minutes....
8.
Hight-Huf N, Nagar Y, Levi A, Pagaduan J, Datar A, Katsumata R, et al.
ACS Appl Mater Interfaces . 2021 Oct; 13(40):47945-47953. PMID: 34607423
We investigated the nature of graphene surface doping by zwitterionic polymers and the implications of weak in-plane and strong through-plane screening using a novel sample geometry that allows direct access...
9.
Pagaduan J, Hight-Huf N, Datar A, Nagar Y, Barnes M, Naveh D, et al.
ACS Nano . 2021 Jan; 15(2):2762-2770. PMID: 33512145
Work function engineering of two-dimensional (2D) materials by application of polymer coatings represents a research thrust that promises to enhance the performance of electronic devices. While polymer zwitterions have been...