Online: 29 June 2023 (10:14:05 CEST)
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Online: 25 July 2017 (05:14:07 CEST)
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Online: 24 September 2024 (03:50:12 CEST)
Subject: Chemistry And Materials Science, Biomaterials Keywords: There are many molecules used as drug carrier. TUD-1 is a newly synthesized mesoporous silica (SM) molecule possess two important features; consists of mesoporous so it is very suitable to be drug carrier in addition to that it has the ability to induce apoptosis in cancer cells. However, the effect of TUD-1 appears to act as cell death inducer, regardless of whether it is necrosis or apoptosis. Unfortunately, recent studies indicate that a proportion of cells undergo necrosis rather than apoptosis, which limits the use of TUD-1 as a secure treatment. On the other hand, lithium considered as necrosis inhibitor element. Hence, current study based on the idea of production a new Li/TUD-1 by incorporated mesoporous silica (TUD-1 type) with lithium in order to produce a new compound that has the ability to activate apoptosis by mesoporous silica (TUD-1 type) and at the same time can inhibit the activity of necrosis by lithium. Herein, lithium was incorporated in TUD-1 mesoporous silica by
Online: 4 October 2018 (15:54:02 CEST)
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Online: 29 October 2024 (17:06:35 CET)
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Online: 7 June 2024 (07:49:46 CEST)
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Online: 17 May 2024 (11:36:30 CEST)
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Online: 26 March 2024 (12:30:46 CET)
Online: 5 February 2024 (08:12:34 CET)
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Online: 9 March 2022 (02:34:20 CET)
Online: 8 June 2021 (11:23:58 CEST)
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Online: 3 December 2020 (13:05:02 CET)
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Online: 30 April 2020 (16:31:51 CEST)
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Online: 4 February 2020 (10:34:01 CET)
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Online: 11 June 2018 (16:40:22 CEST)
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Online: 30 October 2024 (11:34:35 CET)
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Online: 16 August 2024 (07:19:01 CEST)
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Online: 24 June 2024 (08:50:30 CEST)
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Online: 1 May 2024 (07:53:40 CEST)
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Online: 12 November 2018 (05:18:40 CET)
Online: 21 August 2023 (07:26:27 CEST)
Online: 5 April 2024 (11:01:27 CEST)
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Online: 1 September 2023 (13:52:27 CEST)
Online: 10 November 2022 (05:58:50 CET)
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Online: 22 June 2021 (14:05:04 CEST)
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Online: 27 October 2023 (13:21:23 CEST)
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Online: 4 November 2022 (01:04:58 CET)
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Online: 9 October 2022 (03:16:35 CEST)
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Preprint ARTICLE | doi:10.3390/sci2030071
Online: 9 September 2020 (00:00:00 CEST)
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Online: 3 August 2023 (09:39:00 CEST)
Online: 1 August 2024 (13:26:29 CEST)
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Online: 17 July 2024 (12:44:41 CEST)
Online: 16 April 2018 (05:12:59 CEST)
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Online: 7 September 2023 (02:52:57 CEST)
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Online: 12 December 2016 (11:18:16 CET)
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Online: 15 October 2024 (18:17:00 CEST)
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Online: 12 August 2024 (08:07:17 CEST)
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Online: 26 July 2023 (07:19:17 CEST)
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Online: 4 January 2023 (12:25:56 CET)
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Online: 7 September 2022 (05:21:16 CEST)
Online: 17 May 2022 (14:19:43 CEST)
Online: 8 March 2019 (15:12:29 CET)
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Online: 15 June 2018 (13:01:42 CEST)
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Online: 29 January 2024 (12:25:22 CET)
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Online: 1 September 2019 (14:40:07 CEST)
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Online: 24 May 2022 (09:30:41 CEST)
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Online: 12 July 2021 (14:18:23 CEST)
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Online: 12 July 2020 (14:28:35 CEST)
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Online: 15 October 2024 (12:34:43 CEST)
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Online: 19 January 2024 (03:14:14 CET)
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Subject: Physical Sciences, Applied Physics Keywords:

crystals with ion-molecular chemical bonds; hydrogen-bonded crystals (HBC); proton semiconductors and dielectrics (PSD); generalized nonlinear quasi-classical kinetic equation of nonlinear relaxation polarization; quantum diffusion polarization; Fokker – Planck kinetic equation (solving in complex with the Poisson equation); quantum tunneling diffusional relaxation polarization (for the proton subsystem in HBC); non-linear volume charge relaxation polarization (in ion dielectrics); ion conductivity; proton relaxation; migratory polarization; quantum transparency of potential barrier; complex dielectric permittivity (CDP); theoretical frequency-temperature spectra of CDP; thermally stimulated polarization current (TSPC); thermally stimulated depolarization current (TSDC); dielectric loss tangent; thin films of ferroelectric materials; ultralow temperature range; rectangular hysteresis loop; resonant tunnel diodes

Online: 25 October 2024 (15:13:09 CEST)
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Online: 1 October 2023 (09:43:43 CEST)
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Online: 7 October 2024 (11:21:47 CEST)
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Online: 18 July 2023 (12:24:24 CEST)
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